Current Protein Identity:Q00582 New Search
Main Difference Dimensions in This Set
Different construct Different mutation/modification 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
3R7W Crystal Structure of Gtr1p-Gtr2p complex Deposited 2011-03-23 Assembly 1 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain A 8–310(303 aa) Fragment:residues 8-310
Non-standard monomer:Yes (specific site not provided by mmCIF) GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 2 MG MAGNESIUM ION × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;0.1M HEPES, 10% PEG monomethyl ether 5000, 5%(v/v) Tacsimate, pH 7.0, VAPOR DIFFUSION, HANGING DROP, temperature 277K
Resolution 2.77 Å R-free 0.283
3R7W Crystal Structure of Gtr1p-Gtr2p complex Deposited 2011-03-23 Assembly 2 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain C 8–310(303 aa) Fragment:residues 8-310
Non-standard monomer:Yes (specific site not provided by mmCIF) GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 2 MG MAGNESIUM ION × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7;277 K;0.1M HEPES, 10% PEG monomethyl ether 5000, 5%(v/v) Tacsimate, pH 7.0, VAPOR DIFFUSION, HANGING DROP, temperature 277K
Resolution 2.77 Å R-free 0.283
4ARZ The crystal structure of Gtr1p-Gtr2p complexed with GTP-GDP Deposited 2012-04-27 Assembly 1 Protein heterocomplex Heteromer;Protein × 2 PDB declaration: dimeric(2) Consistent with protein count
Chain A 1–310(310 aa)
Not recorded GTP GUANOSINE-5'-TRIPHOSPHATE × 1 MG MAGNESIUM ION × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 1 X-RAY DIFFRACTION
X-ray crystallization conditions pH 8.5;pH 8.5
Resolution 3.10 Å R-free 0.272
6JWP crystal structure of EGOC Deposited 2019-04-21 Assembly 1 Protein heterocomplex Heteromer;Protein × 5 PDB declaration: pentameric(5) Consistent with protein count
Chain A 1–310(310 aa)
Not recorded GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 2 MG MAGNESIUM ION × 2 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;294 K;100mM HEPES (pH 7.5), 200mM NaCl, and 12%(w/v) PEG 8000
Resolution 3.20 Å R-free 0.285
6JWP crystal structure of EGOC Deposited 2019-04-21 Assembly 2 Protein heterocomplex Heteromer;Protein × 5 PDB declaration: pentameric(5) Consistent with protein count
Chain F 1–310(310 aa)
Not recorded GNP PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER × 1 MG MAGNESIUM ION × 1 X-RAY DIFFRACTION
X-ray crystallization conditions VAPOR DIFFUSION, HANGING DROP;pH 7.5;294 K;100mM HEPES (pH 7.5), 200mM NaCl, and 12%(w/v) PEG 8000
Resolution 3.20 Å R-free 0.285
9H4Q Cryo-EM structure of the SEAC wing - EGOC Deposited 2024-10-21 Assembly 1 Protein heterocomplex Heteromer;Protein × 9 PDB declaration: nonameric(9) Consistent with protein count
Chain a 1–310(310 aa)
Not recorded MG MAGNESIUM ION × 1 AF3 ALUMINUM FLUORIDE × 1 GDP GUANOSINE-5'-DIPHOSPHATE × 2 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.10 Å
9H5K Cryo-EM structure of the SEAC-EGOC supercomplex Deposited 2024-10-22 Assembly 1 Protein heterocomplex Heteromer;Protein × 32 PDB declaration: 32-meric(32) Consistent with protein count
Chain a 1–310(310 aa)
Chain b 1–310(310 aa)
Not recorded ZN ZINC ION × 28 MG MAGNESIUM ION × 2 AF3 ALUMINUM FLUORIDE × 2 GDP GUANOSINE-5'-DIPHOSPHATE × 4 ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 3.20 Å