Current Protein Identity:A0A0G3F489 New Search
Main Difference Dimensions in This Set
Different construct Different ligand/ion 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
7TJY Yeast ATP synthase State 1catalytic(a) without exogenous ATP backbone model Deposited 2022-01-17 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain 0 1–76(76 aa)
Chain 1 1–76(76 aa)
Chain 2 1–76(76 aa)
Chain 3 1–76(76 aa)
Chain 4 1–76(76 aa)
Chain 5 1–76(76 aa)
Chain 6 1–76(76 aa)
Chain 7 1–76(76 aa)
Chain 8 1–76(76 aa)
Chain 9 1–76(76 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 3.80 Å
7TJZ Yeast ATP synthase State 1catalytic(b) without exogenous ATP backbone model Deposited 2022-01-17 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain 0 1–76(76 aa)
Chain 1 1–76(76 aa)
Chain 2 1–76(76 aa)
Chain 3 1–76(76 aa)
Chain 4 1–76(76 aa)
Chain 5 1–76(76 aa)
Chain 6 1–76(76 aa)
Chain 7 1–76(76 aa)
Chain 8 1–76(76 aa)
Chain 9 1–76(76 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 4.40 Å
7TK0 Yeast ATP synthase State 1catalytic(c) without exogenous ATP backbone model Deposited 2022-01-17 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain 0 1–76(76 aa)
Chain 1 1–76(76 aa)
Chain 2 1–76(76 aa)
Chain 3 1–76(76 aa)
Chain 4 1–76(76 aa)
Chain 5 1–76(76 aa)
Chain 6 1–76(76 aa)
Chain 7 1–76(76 aa)
Chain 8 1–76(76 aa)
Chain 9 1–76(76 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 4.40 Å
7TK1 Yeast ATP synthase State 1catalytic(d) without exogenous ATP backbone model Deposited 2022-01-17 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain 0 1–76(76 aa)
Chain 1 1–76(76 aa)
Chain 2 1–76(76 aa)
Chain 3 1–76(76 aa)
Chain 4 1–76(76 aa)
Chain 5 1–76(76 aa)
Chain 6 1–76(76 aa)
Chain 7 1–76(76 aa)
Chain 8 1–76(76 aa)
Chain 9 1–76(76 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 7.4
cryo-EM vitrification conditions Cryogen ETHANE-PROPANE
Resolution 7.10 Å
8FKJ Yeast ATP Synthase in conformation-3, at pH 6 Deposited 2022-12-21 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain K 2–75(74 aa)
Chain L 2–75(74 aa)
Chain M 2–75(74 aa)
Chain N 2–75(74 aa)
Chain O 2–75(74 aa)
Chain P 2–75(74 aa)
Chain Q 2–75(74 aa)
Chain R 2–75(74 aa)
Chain S 2–75(74 aa)
Chain T 2–75(74 aa)
Not recorded No recorded non-water small molecule ELECTRON MICROSCOPY
cryo-EM buffer pH 6
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.20 Å
8FL8 Yeast ATP Synthase structure in presence of MgATP Deposited 2022-12-21 Assembly 1 Protein heterocomplex Heteromer;Protein × 27 PDB declaration: 27-meric(27) Consistent with protein count
Chain K 1–75(75 aa)
Chain L 1–75(75 aa)
Chain M 1–75(75 aa)
Chain N 1–75(75 aa)
Chain O 1–75(75 aa)
Chain P 1–75(75 aa)
Chain Q 1–75(75 aa)
Chain R 1–75(75 aa)
Chain S 1–75(75 aa)
Chain T 1–75(75 aa)
Not recorded ATP ADENOSINE-5'-TRIPHOSPHATE × 4 MG MAGNESIUM ION × 5 ADP ADENOSINE-5'-DIPHOSPHATE × 1 ELECTRON MICROSCOPY
cryo-EM buffer pH 8
cryo-EM vitrification conditions Cryogen ETHANE
Resolution 4.20 Å