Current Protein Identity:A0A6A5PVE9 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
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 AK 1–121(121 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 AK 1–121(121 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
6ZVI Mbf1-ribosome complex Deposited 2020-07-24 Assembly 1 Protein–RNA Heteromer;Protein × 34 PDB declaration: 38-meric(38) Consistent with all polymers
Chain C 19–119(101 aa)
Not recorded ZN ZINC ION × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.5
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.00 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 uS10 1–121(121 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 uS10 1–121(121 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
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 SU 1–121(121 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
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 AU 20–119(100 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 AU 20–119(100 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
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 AU 20–119(100 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
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 D0 15–121(107 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 J 20–119(100 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
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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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 w 1–121(121 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
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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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
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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 BU 1–121(121 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 SJ 20–119(100 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 SJ 20–119(100 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