Current Protein Identity:P36105 New Search
Main Difference Dimensions in This Set
Different construct Different assembly state Different ligand/ion Different experimental method Different experimental conditions Different structure-quality metrics

Difference tags compare only the current result set; every original PDB and assembly record remains separate.

Related-Structure Differences

Each row represents one biological assembly in one PDB entry; multiple monomers of the same protein are listed separately.

PDB Entry Assembly / Oligomeric State Construct Mutations and Modifications Ligands, Ions and Non-polymers Experimental Method Experimental Conditions Structure Quality
3J6X S. cerevisiae 80S ribosome bound with Taura syndrome virus (TSV) IRES, 5 degree rotation (Class II) Deposited 2014-04-16 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain 54 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer 45 mM HEPES/KOH, 10 mM MgCl2, 100 mM KCl, 2.5 mM spermine, 2 mM BME, 0.5 U/uL RNasin;pH 7.5;45 mM HEPES/KOH, 10 mM MgCl2, 100 mM KCl, 2.5 mM spermine, 2 mM BME, 0.5 U/uL RNasin
cryo-EM vitrification conditions Fresh glow discharge, 7 second blot;Cryogen ETHANE;Fresh glow discharge, 7 second blot before plunging into liquid ehtane (FEI VITROBOT MARK II).
Resolution 6.10 Å
3J6Y S. cerevisiae 80S ribosome bound with Taura syndrome virus (TSV) IRES, 2 degree rotation (Class I) Deposited 2014-04-16 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain 54 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer 45 mM HEPES/KOH, 10 mM MgCl2, 100 mM KCl, 2.5 mM spermine, 2 mM BME, 0.5 U/uL RNasin;pH 7.5;45 mM HEPES/KOH, 10 mM MgCl2, 100 mM KCl, 2.5 mM spermine, 2 mM BME, 0.5 U/uL RNasin
cryo-EM vitrification conditions Fresh glow discharge, 7 second blot;Cryogen ETHANE;Fresh glow discharge, 7 second blot before plunging into liquid ehtane (FEI VITROBOT MARK II).
Resolution 6.10 Å
3J77 Structures of yeast 80S ribosome-tRNA complexes in the rotated and non-rotated conformations (Class II - rotated ribosome with 1 tRNA) Deposited 2014-05-29 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 83-meric(83) Consistent with all polymers
Chain 64 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer 20 mM Tris-HCl, 50 mM NH4Cl, 20 mM MgCl2;pH 7.5;20 mM Tris-HCl, 50 mM NH4Cl, 20 mM MgCl2
cryo-EM vitrification conditions Cryogen ETHANE;Plunged into liquid ethane (FEI VITROBOT MARK II)
Resolution 6.20 Å
3J78 Structures of yeast 80S ribosome-tRNA complexes in the rotated and non-rotated conformations (Class I - non-rotated ribosome with 2 tRNAs) Deposited 2014-05-29 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain 64 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer 20 mM Tris-HCl, 50 mM NH4Cl, 20 mM MgCl2;pH 7.5;20 mM Tris-HCl, 50 mM NH4Cl, 20 mM MgCl2
cryo-EM vitrification conditions Cryogen ETHANE;Plunged into liquid ethane (FEI VITROBOT MARK II)
Resolution 6.30 Å
3JCT Cryo-em structure of eukaryotic pre-60S ribosomal subunits Deposited 2016-03-09 Assembly 1 Protein–RNA Heteromer;Protein × 54 PDB declaration: 58-meric(58) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.08 Å
4U3M Crystal structure of Anisomycin bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 ANM ANISOMYCIN × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.245
4U3M Crystal structure of Anisomycin bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 ANM ANISOMYCIN × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.245
4U3N Crystal structure of CCA trinucleotide bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 677 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.237
4U3N Crystal structure of CCA trinucleotide bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 84-meric(84) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 731 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.237
4U3U Crystal structure of Cycloheximide bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 2.90 Å R-free 0.245
4U3U Crystal structure of Cycloheximide bound to the yeast 80S ribosome Deposited 2014-07-22 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 730 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 2.90 Å R-free 0.245
4U4N Crystal structure of Edeine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 676 OHX osmium (III) hexammine × 557 EDE EDEINE B × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
4U4N Crystal structure of Edeine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 730 OHX osmium (III) hexammine × 574 EDE EDEINE B × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
4U4O Crystal structure of Geneticin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 556 GET GENETICIN × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.60 Å R-free 0.267
4U4O Crystal structure of Geneticin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.60 Å R-free 0.267
4U4Q Crystal structure of Homoharringtonine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 HMT (3beta)-O~3~-[(2R)-2,6-dihydroxy-2-(2-methoxy-2-oxoethyl)-6-methylheptanoyl]cephalotaxine × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.255
4U4Q Crystal structure of Homoharringtonine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 733 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 HMT (3beta)-O~3~-[(2R)-2,6-dihydroxy-2-(2-methoxy-2-oxoethyl)-6-methylheptanoyl]cephalotaxine × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.255
4U4R Crystal structure of Lactimidomycin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 3H3 4-{(2R,5S,6E)-2-hydroxy-5-methyl-7-[(2R,3S,4E,6Z,10E)-3-methyl-12-oxooxacyclododeca-4,6,10-trien-2-yl]-4-oxooct-6-en-1-yl}piperidine-2,6-dione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 2.80 Å R-free 0.246
4U4R Crystal structure of Lactimidomycin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 730 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 3H3 4-{(2R,5S,6E)-2-hydroxy-5-methyl-7-[(2R,3S,4E,6Z,10E)-3-methyl-12-oxooxacyclododeca-4,6,10-trien-2-yl]-4-oxooct-6-en-1-yl}piperidine-2,6-dione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 2.80 Å R-free 0.246
4U4U Crystal structure of Lycorine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-MERIC(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 679 OHX osmium (III) hexammine × 557 ZN ZINC ION × 8 3KD (1S,2S,12bS,12cS)-2,4,5,7,12b,12c-hexahydro-1H-[1,3]dioxolo[4,5-j]pyrrolo[3,2,1-de]phenanthridine-1,2-diol × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.259
4U4U Crystal structure of Lycorine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-MERIC(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 733 OHX osmium (III) hexammine × 576 ZN ZINC ION × 8 3KD (1S,2S,12bS,12cS)-2,4,5,7,12b,12c-hexahydro-1H-[1,3]dioxolo[4,5-j]pyrrolo[3,2,1-de]phenanthridine-1,2-diol × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.259
4U4Y Crystal structure of Pactamycin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 556 PCY Pactamycin × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.245
4U4Y Crystal structure of Pactamycin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 85-meric(85) Review required
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 574 PCY Pactamycin × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.245
4U4Z Crystal structure of Phyllanthoside bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Review required
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 677 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 3K5 3-O-acetyl-2-O-(3-O-acetyl-6-deoxy-beta-D-glucopyranosyl)-6-deoxy-1-O-{[(2R,2'S,3a'R,4''S,5''R,6'S,7a'S)-5''-methyl-4''-{[(2E)-3-phenylprop-2-enoyl]oxy}decahydrodispiro[oxirane-2,3'-[1]benzofuran-2',2''-pyran]-6'-yl]carbonyl}-beta-D-glucopyranose × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
4U4Z Crystal structure of Phyllanthoside bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 95-meric(95) Review required
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 731 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 3K5 3-O-acetyl-2-O-(3-O-acetyl-6-deoxy-beta-D-glucopyranosyl)-6-deoxy-1-O-{[(2R,2'S,3a'R,4''S,5''R,6'S,7a'S)-5''-methyl-4''-{[(2E)-3-phenylprop-2-enoyl]oxy}decahydrodispiro[oxirane-2,3'-[1]benzofuran-2',2''-pyran]-6'-yl]carbonyl}-beta-D-glucopyranose × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
4U50 Crystal structure of Verrucarin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 556 ZN ZINC ION × 8 3L2 (4S,5R,10E,12Z,16R,16aS,17S,18R,19aR,23aR)-4-hydroxy-5,16a,21-trimethyl-4,5,6,7,16,16a,22,23-octahydro-3H,18H,19aH-spiro[16,18-methano[1,6,12]trioxacyclooctadecino[3,4-d]chromene-17,2'-oxirane]-3,9,14-trione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.262
4U50 Crystal structure of Verrucarin bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 576 ZN ZINC ION × 8 3L2 (4S,5R,10E,12Z,16R,16aS,17S,18R,19aR,23aR)-4-hydroxy-5,16a,21-trimethyl-4,5,6,7,16,16a,22,23-octahydro-3H,18H,19aH-spiro[16,18-methano[1,6,12]trioxacyclooctadecino[3,4-d]chromene-17,2'-oxirane]-3,9,14-trione × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.262
4U51 Crystal structure of Narciclasine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 676 OHX osmium (III) hexammine × 557 ZN ZINC ION × 8 3KF (2S,3R,4S,4aR)-2,3,4,7-tetrahydroxy-3,4,4a,5-tetrahydro[1,3]dioxolo[4,5-j]phenanthridin-6(2H)-one × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.253
4U51 Crystal structure of Narciclasine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 572 ZN ZINC ION × 8 3KF (2S,3R,4S,4aR)-2,3,4,7-tetrahydroxy-3,4,4a,5-tetrahydro[1,3]dioxolo[4,5-j]phenanthridin-6(2H)-one × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.253
4U52 Crystal structure of Nagilactone C bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 679 OHX osmium (III) hexammine × 556 ZN ZINC ION × 8 3J2 Nagilactone C × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.258
4U52 Crystal structure of Nagilactone C bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 734 OHX osmium (III) hexammine × 575 ZN ZINC ION × 8 3J2 Nagilactone C × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.00 Å R-free 0.258
4U53 Crystal structure of Deoxynivalenol bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 676 OHX osmium (III) hexammine × 556 ZN ZINC ION × 8 3J6 (3beta,7alpha)-3,7,15-trihydroxy-12,13-epoxytrichothec-9-en-8-one × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.30 Å R-free 0.255
4U53 Crystal structure of Deoxynivalenol bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 730 OHX osmium (III) hexammine × 574 ZN ZINC ION × 8 3J6 (3beta,7alpha)-3,7,15-trihydroxy-12,13-epoxytrichothec-9-en-8-one × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.30 Å R-free 0.255
4U55 Crystal structure of Cryptopleurine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-MERIC(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 557 3K8 (14aR)-2,3,6-trimethoxy-11,12,13,14,14a,15-hexahydro-9H-dibenzo[f,h]pyrido[1,2-b]isoquinoline × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.246
4U55 Crystal structure of Cryptopleurine bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-MERIC(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 574 3K8 (14aR)-2,3,6-trimethoxy-11,12,13,14,14a,15-hexahydro-9H-dibenzo[f,h]pyrido[1,2-b]isoquinoline × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.20 Å R-free 0.246
4U56 Crystal structure of Blasticidin S bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Review required
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 675 OHX osmium (III) hexammine × 558 ZN ZINC ION × 8 BLS BLASTICIDIN S × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.45 Å R-free 0.260
4U56 Crystal structure of Blasticidin S bound to the yeast 80S ribosome Deposited 2014-07-24 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 85-meric(85) Review required
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 732 OHX osmium (III) hexammine × 574 ZN ZINC ION × 8 BLS BLASTICIDIN S × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.45 Å R-free 0.260
4U6F Crystal structure of T-2 toxin bound to the yeast 80S ribosome Deposited 2014-07-28 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 678 OHX osmium (III) hexammine × 557 ZN ZINC ION × 8 ZBA 12,13-Epoxytrichothec-9-ene-3,4,8,15-tetrol-4,15-diacetate-8-isovalerate × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.247
4U6F Crystal structure of T-2 toxin bound to the yeast 80S ribosome Deposited 2014-07-28 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 731 OHX osmium (III) hexammine × 574 ZN ZINC ION × 8 ZBA 12,13-Epoxytrichothec-9-ene-3,4,8,15-tetrol-4,15-diacetate-8-isovalerate × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.247
4V7F Arx1 pre-60S particle. Deposited 2013-12-10 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 8.70 Å
4V7R Yeast 80S ribosome. Deposited 2010-07-23 Assembly 1 Protein–RNA Heteromer;Protein × 69 PDB declaration: 73-meric(73) Consistent with all polymers
Chain BN 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 355 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION;pH 7;297 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine, pH 7, VAPOR DIFFUSION, temperature 297K
Resolution 4.00 Å R-free 0.341
4V7R Yeast 80S ribosome. Deposited 2010-07-23 Assembly 2 Protein–RNA Heteromer;Protein × 62 PDB declaration: 66-meric(66) Consistent with all polymers
Chain DN 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 360 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION;pH 7;297 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine, pH 7, VAPOR DIFFUSION, temperature 297K
Resolution 4.00 Å R-free 0.341
4V88 The structure of the eukaryotic ribosome at 3.0 A resolution. Deposited 2011-10-11 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain BM 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 657 MG MAGNESIUM ION × 1035 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine, pH 7.5, VAPOR DIFFUSION, HANGING DROP, temperature 277K
Resolution 3.00 Å R-free 0.229
4V88 The structure of the eukaryotic ribosome at 3.0 A resolution. Deposited 2011-10-11 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain DM 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 688 MG MAGNESIUM ION × 1170 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine, pH 7.5, VAPOR DIFFUSION, HANGING DROP, temperature 277K
Resolution 3.00 Å R-free 0.229
4V8T Cryo-EM Structure of the 60S Ribosomal Subunit in Complex with Arx1 and Rei1 Deposited 2012-08-07 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 50-meric(50) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 ELECTRON MICROSCOPY
cryo-EM buffer 20 MM HEPES-NAOH PH 8.0, 50 MM NACL, 5 MM BETA- MERCAPTOETHANOL, 5 MM MGCL2;pH 8;20 MM HEPES-NAOH PH 8.0, 50 MM NACL, 5 MM BETA- MERCAPTOETHANOL, 5 MM MGCL2
cryo-EM vitrification conditions Cryogen ETHANE;PLUNGE FREEZING IN LIQUID ETHANE AFTER MANUAL BLOTTING USING A MANUAL PLUNGE FREEZING DEVICE
Resolution 8.10 Å
5APN Structure of the yeast 60S ribosomal subunit in complex with Arx1, Alb1 and N-terminally tagged Rei1 Deposited 2015-09-17 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 280 ZN ZINC ION × 6 ELECTRON MICROSCOPY
cryo-EM buffer 20MM;pH 8;20MM
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE;PLUNGE-FROZEN
Resolution 3.91 Å
5APO Structure of the yeast 60S ribosomal subunit in complex with Arx1, Alb1 and C-terminally tagged Rei1 Deposited 2015-09-17 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 280 ZN ZINC ION × 6 ELECTRON MICROSCOPY
cryo-EM buffer 20MM HEPES-KOH, 100mM NACL, 5mM MGCL2, 5mM BETA-MERCAPTOETHANOL;pH 8;20MM HEPES-KOH, 100mM NACL, 5mM MGCL2, 5mM BETA-MERCAPTOETHANOL
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE;PLUNGE-FROZEN
Resolution 3.41 Å
5DAT Complex of yeast 80S ribosome with hypusine-containing eIF5A Deposited 2015-08-20 Assembly 1 Protein–RNA Heteromer;Protein × 81 PDB declaration: 86-MERIC(86) Review required
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 580 OHX osmium (III) hexammine × 601 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.15 Å R-free 0.252
5DAT Complex of yeast 80S ribosome with hypusine-containing eIF5A Deposited 2015-08-20 Assembly 2 Protein–RNA Heteromer;Protein × 75 PDB declaration: 86-MERIC(86) Review required
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 528 OHX osmium (III) hexammine × 565 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.15 Å R-free 0.252
5DC3 Complex of yeast 80S ribosome with non-modified eIF5A Deposited 2015-08-23 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 81-meric(81) Review required
Chain M4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.25 Å R-free 0.301
5DC3 Complex of yeast 80S ribosome with non-modified eIF5A Deposited 2015-08-23 Assembly 2 Protein–RNA Heteromer;Protein × 80 PDB declaration: 81-meric(81) Review required
Chain m4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.25 Å R-free 0.301
5DGE Coping with proline stalling: structural basis of hypusine-induced protein synthesis by the eukaryotic ribosome Deposited 2015-08-27 Assembly 1 Protein–RNA Heteromer;Protein × 155 PDB declaration: 165-meric(165) Consistent with all polymers
Chain M4 2–138(137 aa)
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 1093 OHX osmium (III) hexammine × 1169 ZN ZINC ION × 16 SPS SPARSOMYCIN × 2 PRO PROLINE × 4 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.45 Å R-free 0.263
5DGF Complex of yeast 80S ribosome with hypusine-containing/non-modified eIF5A and/or a peptidyl-tRNA analog Deposited 2015-08-27 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: TRIMERIC(83) Review required
Chain M4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 SPS SPARSOMYCIN × 1 MG MAGNESIUM ION × 4 OHX osmium (III) hexammine × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.30 Å R-free 0.310
5DGF Complex of yeast 80S ribosome with hypusine-containing/non-modified eIF5A and/or a peptidyl-tRNA analog Deposited 2015-08-27 Assembly 2 Protein–RNA Heteromer;Protein × 80 PDB declaration: TRIMERIC(81) Review required
Chain m4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 SPS SPARSOMYCIN × 1 MG MAGNESIUM ION × 8 OHX osmium (III) hexammine × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.30 Å R-free 0.310
5DGV Complex of yeast 80S ribosome with hypusine-containing/non-modified eIF5A and/or a peptidyl-tRNA analog Deposited 2015-08-28 Assembly 1 Protein–RNA Heteromer;Protein × 79 PDB declaration: 81-MERIC(81) Review required
Chain m4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 SPS SPARSOMYCIN × 1 MG MAGNESIUM ION × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.10 Å R-free 0.284
5DGV Complex of yeast 80S ribosome with hypusine-containing/non-modified eIF5A and/or a peptidyl-tRNA analog Deposited 2015-08-28 Assembly 2 Protein–RNA Heteromer;Protein × 75 PDB declaration: 81-MERIC(81) Review required
Chain M4 2–138(137 aa)
Not recorded ZN ZINC ION × 8 SPS SPARSOMYCIN × 1 MG MAGNESIUM ION × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.10 Å R-free 0.284
5FCI Structure of the vacant uL3 W255C mutant 80S yeast ribosome Deposited 2015-12-15 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Review required
Chain M4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 874 MG MAGNESIUM ION × 994 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-Acetate pH 7.0, KSCN, Mg-Acetate, Glycerol, Spermidine, PEG20000
Resolution 3.40 Å R-free 0.284
5FCI Structure of the vacant uL3 W255C mutant 80S yeast ribosome Deposited 2015-12-15 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 561 MG MAGNESIUM ION × 626 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-Acetate pH 7.0, KSCN, Mg-Acetate, Glycerol, Spermidine, PEG20000
Resolution 3.40 Å R-free 0.284
5FCJ Structure of the anisomycin-containing uL3 W255C mutant 80S yeast ribosome Deposited 2015-12-15 Assembly 1 Protein–RNA Heteromer;Protein × 79 PDB declaration: 82-meric(82) Review required
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 517 OHX osmium (III) hexammine × 534 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;Tris-Acetate pH7.0, KSCN, Mg-Acetate, Glycerol, Spermidine, PEG20000
Resolution 3.10 Å R-free 0.291
5FCJ Structure of the anisomycin-containing uL3 W255C mutant 80S yeast ribosome Deposited 2015-12-15 Assembly 2 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 462 OHX osmium (III) hexammine × 500 ZN ZINC ION × 8 ANM ANISOMYCIN × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;Tris-Acetate pH7.0, KSCN, Mg-Acetate, Glycerol, Spermidine, PEG20000
Resolution 3.10 Å R-free 0.291
5GAK Yeast 60S ribosomal subunit with A-site tRNA, P-site tRNA and eIF-5A Deposited 2015-12-09 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 49-meric(49) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5;Details can be retrieved from EMD-3227
Resolution 3.88 Å
5H4P Structural snapshot of cytoplasmic pre-60S ribosomal particles bound with Nmd3, Lsg1, Tif6 and Reh1 Deposited 2016-11-01 Assembly 1 Protein–RNA Heteromer;Protein × 41 PDB declaration: 44-meric(44) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.07 Å
5I4L Crystal structure of Amicoumacin A bound to the yeast 80S ribosome Deposited 2016-02-12 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 481 MG MAGNESIUM ION × 493 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.251
5I4L Crystal structure of Amicoumacin A bound to the yeast 80S ribosome Deposited 2016-02-12 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 83-meric(83) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 512 MG MAGNESIUM ION × 526 ZN ZINC ION × 8 UAM Amicoumacin A × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.251
5JCS CRYO-EM STRUCTURE OF THE RIX1-REA1 PRE-60S PARTICLE Deposited 2016-04-15 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 9.50 Å
5JUO Saccharomyces cerevisiae 80S ribosome bound with elongation factor eEF2-GDP-sordarin and Taura Syndrome Virus IRES, Structure I (fully rotated 40S subunit) Deposited 2016-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 83-meric(83) Consistent with all polymers
Chain R 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.00 Å
5JUP Saccharomyces cerevisiae 80S ribosome bound with elongation factor eEF2-GDP-sordarin and Taura Syndrome Virus IRES, Structure II (mid-rotated 40S subunit) Deposited 2016-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 83-meric(83) Consistent with all polymers
Chain R 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
5JUS Saccharomyces cerevisiae 80S ribosome bound with elongation factor eEF2-GDP-sordarin and Taura Syndrome Virus IRES, Structure III (mid-rotated 40S subunit) Deposited 2016-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 83-meric(83) Consistent with all polymers
Chain R 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
Resolution 4.20 Å
5JUT Saccharomyces cerevisiae 80S ribosome bound with elongation factor eEF2-GDP-sordarin and Taura Syndrome Virus IRES, Structure IV (almost non-rotated 40S subunit) Deposited 2016-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 83-meric(83) Consistent with all polymers
Chain R 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.00 Å
5JUU Saccharomyces cerevisiae 80S ribosome bound with elongation factor eEF2-GDP-sordarin and Taura Syndrome Virus IRES, Structure V (least rotated 40S subunit) Deposited 2016-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 83-meric(83) Consistent with all polymers
Chain R 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.00 Å
5LYB Crystal structure of the S.cerevisiae 80S ribosome in complex with the A-site bound aminoacyl-tRNA analog ACCPmn Deposited 2016-09-26 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 1026 OHX osmium (III) hexammine × 659 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION;pH 7;277 K;Tris-Acetate pH 7.0, KSCN, MgOAc2, glycerol, spermidine, PEG20K
Resolution 3.25 Å R-free 0.249
5LYB Crystal structure of the S.cerevisiae 80S ribosome in complex with the A-site bound aminoacyl-tRNA analog ACCPmn Deposited 2016-09-26 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 84-meric(84) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 1166 OHX osmium (III) hexammine × 686 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION;pH 7;277 K;Tris-Acetate pH 7.0, KSCN, MgOAc2, glycerol, spermidine, PEG20K
Resolution 3.25 Å R-free 0.249
5M1J Nonstop ribosomal complex bound with Dom34 and Hbs1 Deposited 2016-10-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 82-meric(82) Consistent with all polymers
Chain M5 3–138(136 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 1058 GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 1 5CR N-acetyl-L-phenylalanine × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.30 Å
5MC6 Cryo-EM structure of a native ribosome-Ski2-Ski3-Ski8 complex from S. cerevisiae Deposited 2016-11-09 Assembly 1 Protein–RNA Heteromer;Protein × 80 PDB declaration: 87-meric(87) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
5MEI Crystal structure of Agelastatin A bound to the 80S ribosome Deposited 2016-11-15 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 78-meric(78) Review required
Chain u 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 517 MG MAGNESIUM ION × 673 7MB Agelastatin A × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.50 Å R-free 0.239
5MEI Crystal structure of Agelastatin A bound to the 80S ribosome Deposited 2016-11-15 Assembly 2 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain CO 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 553 MG MAGNESIUM ION × 733 7MB Agelastatin A × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.50 Å R-free 0.239
5NDG Crystal structure of geneticin (G418) bound to the yeast 80S ribosome Deposited 2017-03-08 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 597 GET GENETICIN × 9 ZN ZINC ION × 9 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.70 Å R-free 0.253
5NDG Crystal structure of geneticin (G418) bound to the yeast 80S ribosome Deposited 2017-03-08 Assembly 2 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 624 GET GENETICIN × 12 ZN ZINC ION × 9 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.70 Å R-free 0.253
5NDV Crystal structure of Paromomycin bound to the yeast 80S ribosome Deposited 2017-03-09 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded PAR PAROMOMYCIN × 40 MG MAGNESIUM ION × 1006 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.30 Å R-free 0.250
5NDV Crystal structure of Paromomycin bound to the yeast 80S ribosome Deposited 2017-03-09 Assembly 2 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded PAR PAROMOMYCIN × 47 MG MAGNESIUM ION × 1133 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.30 Å R-free 0.250
5NDW Crystal structure of aminoglycoside TC007 bound to the yeast 80S ribosome Deposited 2017-03-09 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 671 8UZ TC007 × 10 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.70 Å R-free 0.235
5NDW Crystal structure of aminoglycoside TC007 bound to the yeast 80S ribosome Deposited 2017-03-09 Assembly 2 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 694 8UZ TC007 × 15 ZN ZINC ION × 9 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.70 Å R-free 0.235
5OBM Crystal structure of Gentamicin bound to the yeast 80S ribosome Deposited 2017-06-28 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-MERIC(79) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 855 LLL (2R,3R,4R,5R)-2-((1S,2S,3R,4S,6R)-4,6-DIAMINO-3-((2R,3R,6S)-3-AMINO-6-(AMINOMETHYL)-TETRAHYDRO-2H-PYRAN-2-YLOXY)-2-HYDR OXYCYCLOHEXYLOXY)-5-METHYL-4-(METHYLAMINO)-TETRAHYDRO-2H-PYRAN-3,5-DIOL × 22 ZN ZINC ION × 9 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.40 Å R-free 0.238
5OBM Crystal structure of Gentamicin bound to the yeast 80S ribosome Deposited 2017-06-28 Assembly 2 Protein–RNA Heteromer;Protein × 78 PDB declaration: 82-MERIC(82) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded MG MAGNESIUM ION × 1211 LLL (2R,3R,4R,5R)-2-((1S,2S,3R,4S,6R)-4,6-DIAMINO-3-((2R,3R,6S)-3-AMINO-6-(AMINOMETHYL)-TETRAHYDRO-2H-PYRAN-2-YLOXY)-2-HYDR OXYCYCLOHEXYLOXY)-5-METHYL-4-(METHYLAMINO)-TETRAHYDRO-2H-PYRAN-3,5-DIOL × 47 ZN ZINC ION × 9 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.40 Å R-free 0.238
5ON6 Crystal structure of haemanthamine bound to the 80S ribosome Deposited 2017-08-03 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 78-meric(79) Consistent with all polymers
Chain u 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 515 MG MAGNESIUM ION × 703 HN8 Haemanthamine × 1 GOL GLYCEROL × 2 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
5ON6 Crystal structure of haemanthamine bound to the 80S ribosome Deposited 2017-08-03 Assembly 2 Protein–RNA Heteromer;Protein × 77 PDB declaration: 80-meric(80) Review required
Chain CO 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 549 MG MAGNESIUM ION × 758 HN8 Haemanthamine × 1 GOL GLYCEROL × 3 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.252
5T62 Nmd3 is a structural mimic of eIF5A, and activates the cpGTPase Lsg1 during 60S ribosome biogenesis: 60S-Nmd3-Tif6-Lsg1 Complex Deposited 2016-09-01 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 160 K POTASSIUM ION × 2 GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
5T6R Nmd3 is a structural mimic of eIF5A, and activates the cpGTPase Lsg1 during 60S ribosome biogenesis: 60S-Nmd3 Complex Deposited 2016-09-01 Assembly 1 Insufficient information Heteromer;Protein × 42 PDB declaration: 45-meric(45) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 86 K POTASSIUM ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.20 Å
5TBW Crystal structure of chlorolissoclimide bound to the yeast 80S ribosome Deposited 2016-09-13 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain u 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 518 MG MAGNESIUM ION × 666 7AL Chlorolissoclimide × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.00 Å R-free 0.227
5TBW Crystal structure of chlorolissoclimide bound to the yeast 80S ribosome Deposited 2016-09-13 Assembly 2 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain CO 3–138(136 aa)
Not recorded OHX osmium (III) hexammine × 556 MG MAGNESIUM ION × 728 7AL Chlorolissoclimide × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277.15 K;Tris-acetate pH7.0, potassium thiocyanate, magnesium acetate, glycerol, spermidine, PEG 20000
Resolution 3.00 Å R-free 0.227
5TGA Crystal structure of the S.cerevisiae 80S ribosome in complex with the A-site bound aminoacyl-tRNA analog ACCA-Pro Deposited 2016-09-27 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain M4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 659 MG MAGNESIUM ION × 1026 ZN ZINC ION × 8 PRO PROLINE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277 K;PEG20000
Resolution 3.30 Å R-free 0.265
5TGA Crystal structure of the S.cerevisiae 80S ribosome in complex with the A-site bound aminoacyl-tRNA analog ACCA-Pro Deposited 2016-09-27 Assembly 2 Protein–RNA Heteromer;Protein × 79 PDB declaration: 84-meric(84) Consistent with all polymers
Chain m4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 686 MG MAGNESIUM ION × 1166 ZN ZINC ION × 8 PRO PROLINE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277 K;PEG20000
Resolution 3.30 Å R-free 0.265
5TGM Crystal structure of the S.cerevisiae 80S ribosome in complex with the A-site bound aminoacyl-tRNA analog ACCA-Pro Deposited 2016-09-28 Assembly 1 Protein–RNA Heteromer;Protein × 154 PDB declaration: 164-meric(164) Consistent with all polymers
Chain M4 2–138(137 aa)
Chain m4 2–138(137 aa)
Not recorded OHX osmium (III) hexammine × 1095 MG MAGNESIUM ION × 1191 ZN ZINC ION × 16 PHE PHENYLALANINE × 2 LEU LEUCINE × 2 SPS SPARSOMYCIN × 2 8AN 3'-amino-3'-deoxyadenosine 5'-(dihydrogen phosphate) × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;277 K;PEG20000
Resolution 3.50 Å R-free 0.312
5Z3G Cryo-EM structure of a nucleolar pre-60S ribosome (Rpf1-TAP) Deposited 2018-01-06 Assembly 1 Protein–RNA Heteromer;Protein × 32 PDB declaration: 35-meric(35) Consistent with all polymers
Chain Q 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE;blot for 1-3 seconds before plunging
Resolution 3.65 Å
6C0F Yeast nucleolar pre-60S ribosomal subunit (state 2) Deposited 2017-12-29 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.70 Å
6CB1 Yeast nucleolar pre-60S ribosomal subunit (state 3) Deposited 2018-02-01 Assembly 1 Insufficient information Heteromer;Protein × 37 PDB declaration: 40-meric(40) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.60 Å
6ELZ State E (TAP-Flag-Ytm1 E80A) - Visualizing the assembly pathway of nucleolar pre-60S ribosomes Deposited 2017-09-30 Assembly 1 Protein–RNA Heteromer;Protein × 51 PDB declaration: 54-meric(54) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.30 Å
6EM1 State C (Nsa1-TAP Flag-Ytm1) - Visualizing the assembly pathway of nucleolar pre-60S ribosomes Deposited 2017-10-01 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.60 Å
6EM3 State A architectural model (Nsa1-TAP Flag-Ytm1) - Visualizing the assembly pathway of nucleolar pre-60S ribosomes Deposited 2017-10-01 Assembly 1 Protein–RNA Heteromer;Protein × 30 PDB declaration: 33-meric(33) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
6EM4 State B architectural model (Nsa1-TAP Flag-Ytm1) - Visualizing the assembly pathway of nucleolar pre-60S ribosomes Deposited 2017-10-01 Assembly 1 Protein–RNA Heteromer;Protein × 34 PDB declaration: 37-meric(37) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.10 Å
6EM5 State D architectural model (Nsa1-TAP Flag-Ytm1) - Visualizing the assembly pathway of nucleolar pre-60S ribosomes Deposited 2017-10-01 Assembly 1 Protein–RNA Heteromer;Protein × 54 PDB declaration: 57-meric(57) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.30 Å
6FT6 Structure of the Nop53 pre-60S particle bound to the exosome nuclear cofactors Deposited 2018-02-20 Assembly 1 Protein–RNA Heteromer;Protein × 54 PDB declaration: 57-meric(57) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.90 Å
6GQ1 Cryo-EM reconstruction of yeast 80S ribosome in complex with mRNA, tRNA and eEF2 (GMPPCP/sordarin) Deposited 2018-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 83-meric(83) Consistent with all polymers
Chain M 3–138(136 aa)
Not recorded ZN ZINC ION × 8 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 GCP PHOSPHOMETHYLPHOSPHONIC ACID GUANYLATE ESTER × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE;blot force 4, blot waiting time 30 s
Resolution 4.40 Å
6GQB Cryo-EM reconstruction of yeast 80S ribosome in complex with mRNA, tRNA and eEF2 (GDP+AlF4/sordarin) Deposited 2018-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 84-meric(84) Consistent with all polymers
Chain M 3–138(136 aa)
Not recorded ZN ZINC ION × 8 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ALF TETRAFLUOROALUMINATE ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE;blot force 4, blot waiting time 30 s
Resolution 3.90 Å
6GQV Cryo-EM recosntruction of yeast 80S ribosome in complex with mRNA, tRNA and eEF2 (GMPPCP) Deposited 2018-06-08 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 84-meric(84) Consistent with all polymers
Chain M 3–138(136 aa)
Not recorded ZN ZINC ION × 8 GCP PHOSPHOMETHYLPHOSPHONIC ACID GUANYLATE ESTER × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE;blot force 4, blot waiting time 30 s
Resolution 4.00 Å
6HD7 Cryo-EM structure of the ribosome-NatA complex Deposited 2018-08-17 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 51-meric(51) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
6HHQ Crystal structure of compound C45 bound to the yeast 80S ribosome Deposited 2018-08-28 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 513 MG MAGNESIUM ION × 717 G5B (3~{R})-3-[(1~{S})-2-[(1~{S},4~{a}~{R},6~{S},7~{S},8~{a}~{R})-6,7-bis(chloranyl)-5,5,8~{a}-trimethyl-2-methylidene-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.264
6HHQ Crystal structure of compound C45 bound to the yeast 80S ribosome Deposited 2018-08-28 Assembly 2 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain CO 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 544 MG MAGNESIUM ION × 792 G5B (3~{R})-3-[(1~{S})-2-[(1~{S},4~{a}~{R},6~{S},7~{S},8~{a}~{R})-6,7-bis(chloranyl)-5,5,8~{a}-trimethyl-2-methylidene-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 ZN ZINC ION × 8 GOL GLYCEROL × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;PEG 20K, KSCN, Mg Acetate, Tris-Acetate, Glycerol, Spermidine
Resolution 3.10 Å R-free 0.264
6I7O The structure of a di-ribosome (disome) as a unit for RQC and NGD quality control pathways recognition. Deposited 2018-11-16 Assembly 1 Protein–RNA Heteromer;Protein × 150 PDB declaration: 163-meric(163) Consistent with all polymers
Chain AM 2–138(137 aa)
Chain XM 2–138(137 aa)
Not recorded ZN ZINC ION × 15 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 5.30 Å
6M62 Cryo-Em structure of eukaryotic pre-60S ribosome subunit from Saccharomyces cerevisiae rpf2 delta 255-344 strain, C4 state. Deposited 2020-03-12 Assembly 1 Protein–RNA Heteromer;Protein × 54 PDB declaration: 58-meric(58) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
6N8J Cryo-EM structure of late nuclear (LN) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 49-meric(49) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
6N8K Cryo-EM structure of early cytoplasmic-immediate (ECI) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GTP GUANOSINE-5'-TRIPHOSPHATE × 1 MG MAGNESIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.60 Å
6N8L Cryo-EM structure of early cytoplasmic-late (ECL) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.60 Å
6N8M Cryo-EM structure of pre-Lsg1 (PL) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
6N8N Cryo-EM structure of Lsg1-engaged (LE) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
6N8O Cryo-EM structure of Rpl10-inserted (RI) pre-60S ribosomal subunit Deposited 2018-11-29 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 49-meric(49) Consistent with all polymers
Chain O 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
6OIG Subunit joining exposes nascent pre-40S rRNA for processing and quality control Deposited 2019-04-09 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
6Q8Y Cryo-EM structure of the mRNA translating and degrading yeast 80S ribosome-Xrn1 nuclease complex Deposited 2018-12-16 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
6QIK Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-01-20 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
6QT0 Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-02-22 Assembly 1 Protein–RNA Heteromer;Protein × 42 PDB declaration: 45-meric(45) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
6QTZ Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-02-26 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
6R84 Yeast Vms1 (Q295L)-60S ribosomal subunit complex (pre-state with Arb1) Deposited 2019-03-31 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 50-meric(50) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.60 Å
6R86 Yeast Vms1-60S ribosomal subunit complex (post-state) Deposited 2019-03-31 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 47-meric(47) Review required
Chain O 3–138(136 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
6R87 Yeast Vms1 (Q295L)-60S ribosomal subunit complex (pre-state without Arb1) Deposited 2019-03-31 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 49-meric(49) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
6RI5 Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-04-23 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.30 Å
6RZZ Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-06-13 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 10 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
6S05 Cryo-EM structures of Lsg1-TAP pre-60S ribosomal particles Deposited 2019-06-13 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 8 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
6S47 Saccharomyces cerevisiae 80S ribosome bound with ABCF protein New1 Deposited 2019-06-26 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain AO 2–138(137 aa)
Not recorded ATP ADENOSINE-5'-TRIPHOSPHATE × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.28 Å
6SNT Yeast 80S ribosome stalled on SDD1 mRNA. Deposited 2019-08-27 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 81-meric(81) Consistent with all polymers
Chain s 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 87 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.80 Å
6SV4 The cryo-EM structure of SDD1-stalled collided trisome. Deposited 2019-09-17 Assembly 1 Protein–RNA Heteromer;Protein × 225 PDB declaration: 242-meric(242) Consistent with all polymers
Chain AM 1–138(138 aa)
Chain XM 1–138(138 aa)
Chain zM 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.30 Å
6T4Q Structure of yeast 80S ribosome stalled on the CGA-CCG inhibitory codon combination. Deposited 2019-10-14 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 291 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
6T7I Structure of yeast 80S ribosome stalled on the CGA-CGA inhibitory codon combination. Deposited 2019-10-22 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 81-meric(81) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
6T7T Structure of yeast 80S ribosome stalled on poly(A) tract. Deposited 2019-10-23 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LM 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
6T83 Structure of yeast disome (di-ribosome) stalled on poly(A) tract. Deposited 2019-10-24 Assembly 1 Protein–RNA Heteromer;Protein × 149 PDB declaration: 159-meric(159) Consistent with all polymers
Chain My 1–138(138 aa)
Chain Oa 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.2
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.00 Å
6TB3 yeast 80S ribosome in complex with the Not5 subunit of the CCR4-NOT complex Deposited 2019-10-31 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 83-meric(83) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 327 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.80 Å
6TNU Yeast 80S ribosome in complex with eIF5A and decoding A-site and P-site tRNAs. Deposited 2019-12-10 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded ZN ZINC ION × 7 SPD SPERMIDINE × 1 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
6WOO CryoEM structure of yeast 80S ribosome with Met-tRNAiMet, eIF5B, and GDP Deposited 2020-04-25 Assembly 1 Protein–RNA Heteromer;Protein × 78 PDB declaration: 84-meric(84) Consistent with all polymers
Chain M 2–137(136 aa)
Not recorded ZN ZINC ION × 6 GDP GUANOSINE-5'-DIPHOSPHATE × 1 U6A N-carboxy-L-threonine × 1 MET METHIONINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.90 Å
6XIQ Cryo-EM Structure of K63R Ubiquitin Mutant Ribosome under Oxidative Stress Deposited 2020-06-21 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.20 Å
6XIR Cryo-EM Structure of K63 Ubiquitinated Yeast Translocating Ribosome under Oxidative Stress Deposited 2020-06-21 Assembly 1 Protein–RNA Heteromer;Protein × 70 PDB declaration: 76-meric(76) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 6 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
6YLG Rix1-Rea1 pre-60S particle - 60S core, body 1 (rigid body refinement) Deposited 2020-04-07 Assembly 1 Protein–RNA Heteromer;Protein × 52 PDB declaration: 55-meric(55) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.00 Å
6YLH Rix1-Rea1 pre-60S particle - full composite structure Deposited 2020-04-07 Assembly 1 Protein–RNA Heteromer;Protein × 57 PDB declaration: 60-meric(60) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 4 GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
6YLX pre-60S State NE1 (TAP-Flag-Nop53) Deposited 2020-04-07 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
6YLY pre-60S State NE2 (TAP-Flag-Nop53) Deposited 2020-04-07 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 49-meric(49) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
6Z6J Cryo-EM structure of yeast Lso2 bound to 80S ribosomes under native condition Deposited 2020-05-28 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
6Z6K Cryo-EM structure of yeast reconstituted Lso2 bound to 80S ribosomes Deposited 2020-05-28 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
7AZY Context-specific inhibition of eukaryotic translation by macrolide antibiotics Deposited 2020-11-17 Assembly 1 Protein–RNA Heteromer;Protein × 39 PDB declaration: 42-meric(42) Consistent with all polymers
Chain N 1–138(138 aa)
Not recorded TEL TELITHROMYCIN × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.88 Å
7B7D Yeast 80S ribosome bound to eEF3 and A/A- and P/P-tRNAs Deposited 2020-12-10 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded ATP ADENOSINE-5'-TRIPHOSPHATE × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.30 Å
7BT6 Cryo-EM structure of pre-60S ribosome from Saccharomyces cerevisiae rpl4delta63-87 strain at 3.12 Angstroms resolution(state R1) Deposited 2020-03-31 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.12 Å
7BTB Cryo-EM structure of pre-60S ribosome from Saccharomyces cerevisiae rpl4delta63-87 strain at 3.22 Angstroms resolution(state R2) Deposited 2020-04-01 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 53-meric(53) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GTP GUANOSINE-5'-TRIPHOSPHATE × 2 MG MAGNESIUM ION × 2 ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.22 Å
7MPI Stm1 bound vacant 80S structure isolated from cbf5-D95A Deposited 2021-05-04 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 366 ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.05 Å
7MPJ Stm1 bound vacant 80S structure isolated from wild-type Deposited 2021-05-04 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 745 ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
7N8B Cycloheximide bound vacant 80S structure isolated from cbf5-D95A Deposited 2021-06-14 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 MG MAGNESIUM ION × 374 ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.05 Å
7NAC State E2 nucleolar 60S ribosomal biogenesis intermediate - Composite model Deposited 2021-06-21 Assembly 1 Protein–RNA Heteromer;Protein × 55 PDB declaration: 58-meric(58) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 SAH S-ADENOSYL-L-HOMOCYSTEINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.04 Å
7NRC Structure of the yeast Gcn1 bound to a leading stalled 80S ribosome with Rbg2, Gir2, A- and P-tRNA and eIF5A Deposited 2021-03-03 Assembly 1 Protein–RNA Heteromer;Protein × 79 PDB declaration: 86-meric(86) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.90 Å
7NRD Structure of the yeast Gcn1 bound to a colliding stalled 80S ribosome with MBF1, A/P-tRNA and P/E-tRNA Deposited 2021-03-03 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 4.36 Å
7OF1 Nog1-TAP associated immature ribosomal particle population A from S. cerevisiae Deposited 2021-05-04 Assembly 1 Protein–RNA Heteromer;Protein × 39 PDB declaration: 42-meric(42) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
7OH3 Nog1-TAP associated immature ribosomal particle population B from S. cerevisiae Deposited 2021-05-08 Assembly 1 Protein–RNA Heteromer;Protein × 47 PDB declaration: 50-meric(50) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 2 ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
7OHP Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL25 expression shut down, population A Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 31 PDB declaration: 34-meric(34) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
7OHQ Nog1-TAP associated immature ribosomal particle population C from S. cerevisiae Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 52 PDB declaration: 56-meric(56) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 2 ZN ZINC ION × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
7OHR Nog1-TAP associated immature ribosomal particle population E from S. cerevisiae Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 48 PDB declaration: 51-meric(51) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.72 Å
7OHS Nog1-TAP associated immature ribosomal particle population F from S. cerevisiae Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 37 PDB declaration: 40-meric(40) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.38 Å
7OHT Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL2 expression shut down, population A Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 24 PDB declaration: 27-meric(27) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 2 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.70 Å
7OHU Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL2 expression shut down, population B Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 25 PDB declaration: 27-meric(27) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.70 Å
7OHV Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL2 expression shut down, population C Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 43 PDB declaration: 46-meric(46) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
7OHW Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL25 expression shut down, population B Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 37 PDB declaration: 40-meric(40) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.50 Å
7OHX Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL34 expression shut down, population A Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 34 PDB declaration: 37-meric(37) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.30 Å
7OHY Nog1-TAP associated immature ribosomal particles from S. cerevisiae after rpL34 expression shut down, population B Deposited 2021-05-11 Assembly 1 Protein–RNA Heteromer;Protein × 24 PDB declaration: 26-meric(26) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
7OSA Pre-translocation complex of 80 S.cerevisiae ribosome with eEF2 and ligands Deposited 2021-06-08 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 83-meric(83) Consistent with all polymers
Chain eL14 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 490 ZN ZINC ION × 8 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, SITTING DROP;293 K;PEG10K, KSCN, TRIS-HAC
Resolution 3.00 Å R-free 0.250
7OSM Intermediate translocation complex of 80 S.cerevisiae ribosome with eEF2 and ligands Deposited 2021-06-09 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain eL14 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 499 ZN ZINC ION × 8 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, SITTING DROP;293 K;PEG 6000, KSCN, Tris-HAc
Resolution 3.00 Å R-free 0.284
7R7A State E1 nucleolar 60S ribosome biogenesis intermediate - Composite model Deposited 2021-06-24 Assembly 1 Protein–RNA Heteromer;Protein × 54 PDB declaration: 57-meric(57) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.04 Å
7RR5 Structure of ribosomal complex bound with Rbg1/Tma46 Deposited 2021-08-09 Assembly 1 Protein–RNA Heteromer;Protein × 80 PDB declaration: 87-meric(87) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 286 ASP ASPARTIC ACID × 1 ZN ZINC ION × 8 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.23 Å
7TOO Yeast 80S ribosome bound with the ALS/FTD-associated dipeptide repeat protein GR20 Deposited 2022-01-24 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 48-meric(48) Consistent with all polymers
Chain AL14 1–138(138 aa)
Not recorded ZN ZINC ION × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
7TOP Yeast 80S ribosome bound with the ALS/FTD-associated dipeptide repeat protein PR20 Deposited 2022-01-24 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 48-meric(48) Consistent with all polymers
Chain AL14 1–138(138 aa)
Not recorded ZN ZINC ION × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.40 Å
7U0H State NE1 nucleolar 60S ribosome biogenesis intermediate - Overall model Deposited 2022-02-18 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 49-meric(49) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 1 ZN ZINC ION × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.76 Å
7UG6 Cryo-EM structure of pre-60S ribosomal subunit, unmethylated G2922 Deposited 2022-03-24 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 52-meric(52) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE;One blotting step of 2 seconds at force 0
Resolution 2.90 Å
7UOO Nucleoplasmic pre-60S intermediate of the Nog2 containing pre-rotation state Deposited 2022-04-13 Assembly 1 Protein–RNA Heteromer;Protein × 56 PDB declaration: 60-meric(60) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 81 B3P 2-[3-(2-HYDROXY-1,1-DIHYDROXYMETHYL-ETHYLAMINO)-PROPYLAMINO]-2-HYDROXYMETHYL-PROPANE-1,3-DIOL × 3 ZN ZINC ION × 5 GDP GUANOSINE-5'-DIPHOSPHATE × 1 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 K POTASSIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.34 Å
7UQB Nucleoplasmic pre-60S intermediate of the Nog2 containing pre-rotation state from a SPB1-D52A strain with AlF4 Deposited 2022-04-19 Assembly 1 Protein–RNA Heteromer;Protein × 56 PDB declaration: 60-meric(60) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded B3P 2-[3-(2-HYDROXY-1,1-DIHYDROXYMETHYL-ETHYLAMINO)-PROPYLAMINO]-2-HYDROXYMETHYL-PROPANE-1,3-DIOL × 3 MG MAGNESIUM ION × 81 ZN ZINC ION × 5 GDP GUANOSINE-5'-DIPHOSPHATE × 2 ALF TETRAFLUOROALUMINATE ION × 1 K POTASSIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.43 Å
7UQZ Nucleoplasmic pre-60S intermediate of the Nog2 containing pre-rotation state from a SPB1 D52A strain Deposited 2022-04-20 Assembly 1 Protein–RNA Heteromer;Protein × 56 PDB declaration: 60-meric(60) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 81 B3P 2-[3-(2-HYDROXY-1,1-DIHYDROXYMETHYL-ETHYLAMINO)-PROPYLAMINO]-2-HYDROXYMETHYL-PROPANE-1,3-DIOL × 3 ZN ZINC ION × 5 GDP GUANOSINE-5'-DIPHOSPHATE × 2 K POTASSIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.44 Å
7V08 Nucleoplasmic pre-60S intermediate of the Nog2 containing pre-rotation state from a Spb1 D52A suppressor 3 strain Deposited 2022-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 56 PDB declaration: 60-meric(60) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 81 B3P 2-[3-(2-HYDROXY-1,1-DIHYDROXYMETHYL-ETHYLAMINO)-PROPYLAMINO]-2-HYDROXYMETHYL-PROPANE-1,3-DIOL × 3 ZN ZINC ION × 5 GDP GUANOSINE-5'-DIPHOSPHATE × 2 K POTASSIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.36 Å
7Z34 Structure of pre-60S particle bound to DRG1(AFG2). Deposited 2022-03-01 Assembly 1 Protein–RNA Heteromer;Protein × 55 PDB declaration: 58-meric(58) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded AGS PHOSPHOTHIOPHOSPHORIC ACID-ADENYLATE ESTER × 11 MG MAGNESIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
7ZPQ Structure of the RQT-bound 80S ribosome from S. cerevisiae (C1) Deposited 2022-04-28 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain BL 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 86 ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.47 Å
7ZRS Structure of the RQT-bound 80S ribosome from S. cerevisiae (C2) - composite map Deposited 2022-05-05 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain BL 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 4 ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.80 Å
7ZS5 Structure of 60S ribosomal subunit from S. cerevisiae with eIF6 and tRNA Deposited 2022-05-06 Assembly 1 Protein–RNA Heteromer;Protein × 42 PDB declaration: 45-meric(45) Review required
Chain BN 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
7ZUW Structure of RQT (C1) bound to the stalled ribosome in a disome unit from S. cerevisiae Deposited 2022-05-13 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain BL 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 86 ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.30 Å
7ZUX Collided ribosome in a disome unit from S. cerevisiae Deposited 2022-05-13 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 80-meric(80) Consistent with all polymers
Chain EL 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 86 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.50 Å
7ZW0 FAP-80S Complex - Rotated state Deposited 2022-05-17 Assembly 1 Protein–RNA Heteromer;Protein × 79 PDB declaration: 86-meric(86) Consistent with all polymers
Chain LP 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 324 SPD SPERMIDINE × 1 ZN ZINC ION × 34 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.40 Å
8AAF Yeast RQC complex in state G Deposited 2022-07-01 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 54-meric(54) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.50 Å
8AGT Yeast RQC complex in state F Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 54-meric(54) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
8AGU Yeast RQC complex in state E Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 53-meric(53) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
8AGV Yeast RQC complex in state H Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 54-meric(54) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
8AGW Yeast RQC complex in state D Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 48 PDB declaration: 53-meric(53) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
8AGX Yeast RQC complex in state with the RING domain of Ltn1 in the IN position Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 48 PDB declaration: 52-meric(52) Review required
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.40 Å
8AGZ Yeast RQC complex in state with the RING domain of Ltn1 in the OUT position Deposited 2022-07-20 Assembly 1 Protein–RNA Heteromer;Protein × 49 PDB declaration: 54-meric(54) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 13 ZN ZINC ION × 7 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 6.8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
8BIP Structure of a yeast 80S ribosome-bound N-Acetyltransferase B complex Deposited 2022-11-02 Assembly 1 Protein–RNA Heteromer;Protein × 44 PDB declaration: 47-meric(47) Consistent with all polymers
Chain LM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 206 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
8BJQ Structure of a yeast 80S ribosome-bound N-Acetyltransferase B complex Deposited 2022-11-05 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain LM 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 206 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
8BN3 Yeast 80S, ES7s delta, eIF5A, Stm1 containing Deposited 2022-11-12 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 81-meric(81) Consistent with all polymers
Chain M4 3–138(136 aa)
Not recorded MG MAGNESIUM ION × 220 K POTASSIUM ION × 72 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 SPD SPERMIDINE × 3 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 2.40 Å
8BQD Yeast 80S ribosome in complex with Map1 (conformation 1) Deposited 2022-11-21 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
8BQX Yeast 80S ribosome in complex with Map1 (conformation 2) Deposited 2022-11-21 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 3–138(136 aa)
Not recorded ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.80 Å
8CCS 80S S. cerevisiae ribosome with ligands in hybrid-1 pre-translocation (PRE-H1) complex Deposited 2023-01-27 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 281 K POTASSIUM ION × 22 SPD SPERMIDINE × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 1.97 Å
8CDL 80S S. cerevisiae ribosome with ligands in hybrid-2 pre-translocation (PRE-H2) complex Deposited 2023-01-31 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 258 K POTASSIUM ION × 21 SPD SPERMIDINE × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.72 Å
8CDR Translocation intermediate 2 (TI-2) of 80S S. cerevisiae ribosome with ligands and eEF2 in the presence of sordarin Deposited 2023-01-31 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 267 SPD SPERMIDINE × 4 K POTASSIUM ION × 21 GDP GUANOSINE-5'-DIPHOSPHATE × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.04 Å
8CEH Translocation intermediate 4 (TI-4) of 80S S. cerevisiae ribosome with ligands and eEF2 in the presence of sordarin Deposited 2023-02-01 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 262 K POTASSIUM ION × 21 SPD SPERMIDINE × 3 GDP GUANOSINE-5'-DIPHOSPHATE × 1 PO4 PHOSPHATE ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.05 Å
8CF5 Translocation intermediate 1 (TI-1) of 80S S. cerevisiae ribosome with ligands and eEF2 in the presence of sordarin Deposited 2023-02-02 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 241 K POTASSIUM ION × 21 SPD SPERMIDINE × 11 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.71 Å
8CG8 Translocation intermediate 3 (TI-3) of 80S S. cerevisiae ribosome with ligands and eEF2 in the presence of sordarin Deposited 2023-02-03 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 241 SPD SPERMIDINE × 8 K POTASSIUM ION × 19 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.57 Å
8CGN Non-rotated 80S S. cerevisiae ribosome with ligands Deposited 2023-02-06 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 263 K POTASSIUM ION × 19 SPD SPERMIDINE × 4 MET METHIONINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.28 Å
8CIV Translocation intermediate 5 (TI-5) of 80S S. cerevisiae ribosome with ligands and eEF2 in the presence of sordarin Deposited 2023-02-10 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 251 K POTASSIUM ION × 21 SPD SPERMIDINE × 3 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.47 Å
8CKU Translocation intermediate 1 (TI-1*) of 80S S. cerevisiae ribosome with ligands and eEF2 in the absence of sordarin Deposited 2023-02-16 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 205 K POTASSIUM ION × 16 SPD SPERMIDINE × 3 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.11 Å
8CMJ Translocation intermediate 4 (TI-4*) of 80S S. cerevisiae ribosome with eEF2 in the absence of sordarin Deposited 2023-02-20 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain PP 1–138(138 aa)
Not recorded ZN ZINC ION × 8 MG MAGNESIUM ION × 153 K POTASSIUM ION × 10 GTP GUANOSINE-5'-TRIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.79 Å
8E5T Yeast co-transcriptional Noc1-Noc2 RNP assembly checkpoint intermediate Deposited 2022-08-22 Assembly 1 Protein–RNA Heteromer;Protein × 25 PDB declaration: 28-meric(28) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 33 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.00 Å
8EUB Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2 and GDP, Structure I Deposited 2022-10-18 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 255 ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.52 Å
8EVP Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), Structure I Deposited 2022-10-20 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 256 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.38 Å
8EVQ Hypopseudouridylated Ribosome bound with TSV IRES, eEF2, GDP, and sordarin, Structure I Deposited 2022-10-20 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 241 ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.72 Å
8EVR Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure II Deposited 2022-10-20 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 217 ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 W9C (1S,3S,3aR,4S,4aR,7R,7aR,8aS)-8a-{[(6-deoxy-4-O-methyl-alpha-D-altropyranosyl)oxy]methyl}-4-formyl-7-methyl-3-(propan-2-yl)decahydro-1,4-methano-s-indacene-3a(1H)-carboxylate × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.87 Å
8EVS Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2 and GDP, Structure II Deposited 2022-10-20 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 254 ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.62 Å
8EVT Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES) refined against a composite map Deposited 2022-10-20 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 272 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.20 Å
8EWB Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2 and GDP, Structure III Deposited 2022-10-22 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 242 ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.87 Å
8EWC Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), Structure II Deposited 2022-10-22 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 247 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.45 Å
8HFR NPC-trapped pre-60S particle Deposited 2022-11-12 Assembly 1 Protein–RNA Heteromer;Protein × 58 PDB declaration: 61-meric(61) Consistent with all polymers
Chain MQ 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 237 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.64 Å
8K2D Cryo-EM structure of the yeast 80S ribosome with tigecycline, eEF2, Stm1 and eIF5A Deposited 2023-07-12 Assembly 1 Protein–RNA Heteromer;Protein × 80 PDB declaration: 84-meric(84) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded ZN ZINC ION × 9 T1C TIGECYCLINE × 6 MG MAGNESIUM ION × 4 GDP GUANOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
8K82 Cryo-EM structure of the yeast 80S ribosome with tigecycline, Not5 and P-site tRNA Deposited 2023-07-28 Assembly 1 Protein–RNA Heteromer;Protein × 79 PDB declaration: 85-meric(85) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 316 T1C TIGECYCLINE × 6 SPD SPERMIDINE × 1 ZN ZINC ION × 9 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.00 Å
8P4V 80S yeast ribosome in complex with HaterumaimideQ Deposited 2023-05-23 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 461 MG MAGNESIUM ION × 711 K POTASSIUM ION × 2 SPD SPERMIDINE × 1 X1K (3~{R})-3-[(1~{S})-2-[(1~{R},3~{S},4~{a}~{S},8~{a}~{S})-5,5,8~{a}-trimethyl-2-methylidene-3-oxidanyl-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 ZN ZINC ION × 8 OS OSMIUM ION × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;ll lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 3.16 Å R-free 0.251
8P4V 80S yeast ribosome in complex with HaterumaimideQ Deposited 2023-05-23 Assembly 2 Protein–RNA Heteromer;Protein × 76 PDB declaration: 80-meric(80) Consistent with all polymers
Chain CO 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 492 MG MAGNESIUM ION × 766 K POTASSIUM ION × 5 SPD SPERMIDINE × 1 X1K (3~{R})-3-[(1~{S})-2-[(1~{R},3~{S},4~{a}~{S},8~{a}~{S})-5,5,8~{a}-trimethyl-2-methylidene-3-oxidanyl-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 ZN ZINC ION × 7 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;ll lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 3.16 Å R-free 0.251
8P85 80S yeast ribosome in complex with Fluorolissoclimide Deposited 2023-08-31 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 484 MG MAGNESIUM ION × 717 K POTASSIUM ION × 2 SPD SPERMIDINE × 1 VDU fluorolissoclimide × 1 ZN ZINC ION × 8 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;ll lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 2.90 Å R-free 0.223
8P85 80S yeast ribosome in complex with Fluorolissoclimide Deposited 2023-08-31 Assembly 2 Protein–RNA Heteromer;Protein × 75 PDB declaration: 79-meric(79) Consistent with all polymers
Chain CO 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 519 MG MAGNESIUM ION × 785 K POTASSIUM ION × 2 SPD SPERMIDINE × 1 VDU fluorolissoclimide × 1 ZN ZINC ION × 9 5XU (2~{S})-2-azanylpropanal × 5 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;ll lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 2.90 Å R-free 0.223
8P8M Yeast 60S ribosomal subunit, RPL39 deletion Deposited 2023-06-01 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain JU 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 156 SPM SPERMINE × 1 SPD SPERMIDINE × 1 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 2.66 Å
8P8N Mouse RPL39 integrated into the yeast 60S ribosomal subunit Deposited 2023-06-02 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain JU 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 152 CL CHLORIDE ION × 20 SPD SPERMIDINE × 1 SPM SPERMINE × 1 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 2.15 Å
8P8U Yeast 60S ribosomal subunit Deposited 2023-06-02 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain JU 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 129 CL CHLORIDE ION × 24 SPM SPERMINE × 1 SPD SPERMIDINE × 1 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 2.23 Å
8P9A 80S yeast ribosome in complex with Methyllissoclimide Deposited 2023-06-05 Assembly 1 Protein–RNA Heteromer;Protein × 150 PDB declaration: 158-meric(158) Consistent with all polymers
Chain CO 1–138(138 aa)
Chain u 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 930 MG MAGNESIUM ION × 1464 SPD SPERMIDINE × 2 XBI (3~{R})-3-[(1~{S})-2-[(1~{R},3~{S},4~{a}~{S},7~{S},8~{a}~{S})-5,5,7,8~{a}-tetramethyl-2-methylidene-3-oxidanyl-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 2 ZN ZINC ION × 18 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277.15 K;ll lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 2.90 Å
8PFR Mouse RPL39L integrated into the yeast 60S ribosomal subunit Deposited 2023-06-16 Assembly 1 Protein–RNA Heteromer;Protein × 40 PDB declaration: 43-meric(43) Consistent with all polymers
Chain JU 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 170 CL CHLORIDE ION × 24 SPM SPERMINE × 1 SPD SPERMIDINE × 1 ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.6;50mM Hepes pH 7.6, 200 mM KCl, 10 mM MgCl2, 5 mM EDTA, 2 mM DTT
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE;30s pre-blot incubation
Resolution 2.15 Å
8PNN 80S yeast ribosome in complex with Bromolissoclimide Deposited 2023-06-30 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 456 MG MAGNESIUM ION × 707 ZN ZINC ION × 8 K POTASSIUM ION × 1 ZWB (3~{R})-3-[(1~{S})-2-[(1~{R},3~{S},4~{a}~{S},7~{S},8~{a}~{S})-7-bromanyl-5,5,8~{a}-trimethyl-2-methylidene-3-oxidanyl-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 SPD SPERMIDINE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277 K;lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 2.90 Å R-free 0.230
8PNN 80S yeast ribosome in complex with Bromolissoclimide Deposited 2023-06-30 Assembly 2 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain CO 1–138(138 aa)
Not recorded OHX osmium (III) hexammine × 479 MG MAGNESIUM ION × 783 ZN ZINC ION × 7 K POTASSIUM ION × 3 ZWB (3~{R})-3-[(1~{S})-2-[(1~{R},3~{S},4~{a}~{S},7~{S},8~{a}~{S})-7-bromanyl-5,5,8~{a}-trimethyl-2-methylidene-3-oxidanyl-3,4,4~{a},6,7,8-hexahydro-1~{H}-naphthalen-1-yl]-1-oxidanyl-ethyl]pyrrolidine-2,5-dione × 1 SPD SPERMIDINE × 3 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;277 K;lissoclimides/80S complexes were formed in 5.5 mM Tris-acetate at pH 7.0, 3 mM K(OAc) at pH 7.2, 5.5 mM NH4(OAc), 2 mM Mg(OAc)2, 1.3 mM DTT by incubation of 80S ribosomes (1.5 uM) with 30-fold molar excess of lissoclimide congeners for 15 min at 30 C. Crystals were grown at 4 C by hanging-drop vapor diffusion
Resolution 2.90 Å R-free 0.230
8T2X Hypomethylated yeast 80S bound with cycloheximide, P-site tRNA, A-site tRNA, messenger RNA and eIF5A, PRE Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 83-meric(83) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 181 K POTASSIUM ION × 23 SPD SPERMIDINE × 1 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.46 Å
8T2Y Hypomethylated yeast 80S bound with cycloheximide, P-site tRNA, and A-site tRNA, messenger RNA, PRE Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 197 SPD SPERMIDINE × 1 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.20 Å
8T2Z Hypomethylated yeast 80S bound with cycloheximide, P-site tRNA, and A-site tRNA, messenger RNA, POST Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded SPD SPERMIDINE × 1 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.40 Å
8T30 Hypomethylated yeast 80S bound with cycloheximide, unmodified U2921, mid rotated Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded SPD SPERMIDINE × 1 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.88 Å
8T3A Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, sordarin, and hibernating factor Los2 Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 82-meric(82) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.86 Å
8T3B Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure I Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.08 Å
8T3C Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure II Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.86 Å
8T3D Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure III Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.95 Å
8T3E Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure IV Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.04 Å
8T3F Hypomethylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES), eEF2, GDP, and sordarin, Structure V Deposited 2023-06-07 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 81-meric(81) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded ZN ZINC ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 SO1 [1R-(1.ALPHA.,3A.BETA.,4.BETA.,4A.BETA.,7.BETA.,7A.ALPHA.,8A.BETA.)]8A-[(6-DEOXY-4-O-METHYL-BETA-D-ALTROPYRANOSYLOXY)METHYL]-4-FORMYL-4,4A,5,6,7,7A,8,8A-OCTAHYDRO-7-METHYL-3-(1-METHYLETHYL)-1,4-METHANO-S-INDACENE-3A(1H)-CARBOXYLIC ACID × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.09 Å
8UT0 Eukaryotic 80S ribosome with Reh1, eIF5A and A/P site tRNA Deposited 2023-10-30 Assembly 1 Protein–RNA Heteromer;Protein × 77 PDB declaration: 84-meric(84) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.22 Å
8UTI Eukaryotic 80S ribosome with Reh1 and A/P site tRNA Deposited 2023-10-31 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded 3HE 4-{(2R)-2-[(1S,3S,5S)-3,5-dimethyl-2-oxocyclohexyl]-2-hydroxyethyl}piperidine-2,6-dione × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.13 Å
8V83 60S ribosome biogenesis intermediate (Dbp10 pre-catalytic structure - Overall map) Deposited 2023-12-04 Assembly 1 Protein–RNA Heteromer;Protein × 45 PDB declaration: 48-meric(48) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.53 Å
8V84 60S ribosome biogenesis intermediate (Dbp10 catalytic structure - Overall map) Deposited 2023-12-04 Assembly 1 Protein–RNA Heteromer;Protein × 46 PDB declaration: 49-meric(49) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded GDP GUANOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 1 ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
8V87 60S ribosome biogenesis intermediate (Dbp10 post-catalytic structure - Overall map) Deposited 2023-12-04 Assembly 1 Protein–RNA Heteromer;Protein × 53 PDB declaration: 56-meric(56) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded ADP ADENOSINE-5'-DIPHOSPHATE × 1 MG MAGNESIUM ION × 2 GDP GUANOSINE-5'-DIPHOSPHATE × 1 K POTASSIUM ION × 1 ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.66 Å
8XU8 State 2c(S2c) of yeast 80S ribosome bound to compact eEF2 and 2 tRNAs during peptidyl transferation Deposited 2024-01-12 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 81-meric(81) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 4.5;YPD
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.40 Å
8Y0U dormant ribosome with STM1 Deposited 2024-01-23 Assembly 1 Protein–RNA Heteromer;Protein × 73 PDB declaration: 77-meric(77) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 281 ZN ZINC ION × 7 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4;50mM HEPES, pH7.5, 100mM KOAc, 5mM Mg(OAc)2, 1mM DTT
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.59 Å
8YLD State 4a (S4a) of yeast 80S ribosome bound to 2 tRNAs and open eEF3 and eEF2 during translocation Deposited 2024-03-06 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 82-meric(82) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 4.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
8YLR State 6 (S6) of yeast 80S ribosome bound to 2 tRNAs and eEF2 and eEF3 during tranlocation Deposited 2024-03-06 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 82-meric(82) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 4.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.90 Å
8Z70 State 1 (S1) of yeast 80S ribosome bound to 2 tRNAs during mRNA decoding Deposited 2024-04-19 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 81-meric(81) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 4.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
8Z71 State 1a (S1a) of yeast 80S ribosome bound to open eEF3 and 2 tRNAs and eEF1A during mRNA decoding Deposited 2024-04-19 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 82-meric(82) Consistent with all polymers
Chain O 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 4.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.60 Å
8ZGR 80S ribosome with A/A tRNA and mRNA of WNV Deposited 2024-05-09 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 79-meric(79) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
8ZGY 80S ribosome with P/E tRNA and mRNA of WNV Deposited 2024-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 80-meric(80) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.80 Å
8ZH3 80S ribosome with A/P-P/E tRNA and mRNA of WNV Deposited 2024-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 81-meric(81) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.70 Å
8ZHB 80S ribosome with A/A P/E tRNA and mRNA of WNV Deposited 2024-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 81-meric(81) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.60 Å
8ZHC pre-frameshift complex of yeast 80S ribosome with eRF1 and mRNA of WNV Deposited 2024-05-10 Assembly 1 Protein–RNA Heteromer;Protein × 76 PDB declaration: 82-meric(82) Consistent with all polymers
Chain LO 3–138(136 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.30 Å
9DOV Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES) and hygromycin B Deposited 2024-09-19 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 257 HYG HYGROMYCIN B × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.49 Å
9DP7 Hypopseudouridylated yeast 80S bound with Taura syndrome virus (TSV) internal ribosome entry site (IRES) and hygromycin B, Class II Deposited 2024-09-20 Assembly 1 Protein–RNA Heteromer;Protein × 75 PDB declaration: 80-meric(80) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 247 HYG HYGROMYCIN B × 1 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.38 Å
9F58 Gcn2 dimer bound to the 60S ribosomal subunit Deposited 2024-04-28 Assembly 1 Protein–RNA Heteromer;Protein × 47 PDB declaration: 50-meric(50) Consistent with all polymers
Chain n 1–138(138 aa)
Not recorded ZN ZINC ION × 5 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.10 Å
9F9S Yeast SDD1 Disome with Mbf1 Deposited 2024-05-08 Assembly 1 Protein–RNA Heteromer;Protein × 152 PDB declaration: 164-meric(164) Consistent with all polymers
Chain LH 1–138(138 aa)
Chain MH 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 295 ZN ZINC ION × 13 K POTASSIUM ION × 16 SPD SPERMIDINE × 3 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.90 Å
9OFV Consensus reconstruction of the eukaryotic Ribosome-associated Quality Control complex Deposited 2025-04-30 Assembly 1 Protein–RNA Heteromer;Protein × 59 PDB declaration: 64-meric(64) Consistent with all polymers
Chain u 1–138(138 aa)
Not recorded ATP ADENOSINE-5'-TRIPHOSPHATE × 9 ADP ADENOSINE-5'-DIPHOSPHATE × 1 ZN ZINC ION × 7 MG MAGNESIUM ION × 12 SPD SPERMIDINE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.16 Å
9PN5 Composite map of hypomethylated 80S ribosome treated with hygromycin B Deposited 2025-07-19 Assembly 1 Protein–RNA Heteromer;Protein × 74 PDB declaration: 78-meric(78) Consistent with all polymers
Chain AM 1–138(138 aa)
Not recorded MG MAGNESIUM ION × 174 K POTASSIUM ION × 27 ZN ZINC ION × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 1.75 Å
9QJC Yeast pre-60S Domain II intermediate Deposited 2025-03-19 Assembly 1 Protein–RNA Heteromer;Protein × 14 PDB declaration: 16-meric(16) Consistent with all polymers
Chain M 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å
9R9O Yeast 80S with nascent chain in complex with Ssb1-ADP in the S1 state Deposited 2025-05-20 Assembly 1 Protein–RNA Heteromer;Protein × 73 PDB declaration: 79-meric(79) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 2.90 Å
9R9P Yeast 80S with nascent chain in complex with Ssb1-ADP in the S2 state Deposited 2025-05-20 Assembly 1 Protein–RNA Heteromer;Protein × 73 PDB declaration: 79-meric(79) Consistent with all polymers
Chain LM 1–138(138 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.00 Å