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1C17

A1C12 SUBCOMPLEX OF F1FO ATP SYNTHASE

Summary for 1C17
Entry DOI10.2210/pdb1c17/pdb
Related1C0V 1C99
DescriptorATP SYNTHASE SUBUNIT C, ATP SYNTHASE SUBUNIT A (2 entities in total)
Functional Keywordsmembrane protein, helix, complex
Biological sourceEscherichia coli
More
Cellular locationCell inner membrane; Multi-pass membrane protein: P68699 P0AB98
Total number of polymer chains13
Total formula weight118977.77
Authors
Rastogi, V.K.,Girvin, M.E. (deposition date: 1999-07-20, release date: 1999-11-24, Last modification date: 2024-05-22)
Primary citationRastogi, V.K.,Girvin, M.E.
Structural changes linked to proton translocation by subunit c of the ATP synthase.
Nature, 402:263-268, 1999
Cited by
PubMed Abstract: F1F0 ATP synthases use a transmembrane proton gradient to drive the synthesis of cellular ATP. The structure of the cytosolic F1 portion of the enzyme and the basic mechanism of ATP hydrolysis by F1 are now well established, but how proton translocation through the transmembrane F0 portion drives these catalytic changes is less clear. Here we describe the structural changes in the proton-translocating F0 subunit c that are induced by deprotonating the specific aspartic acid involved in proton transport. Conformational changes between the protonated and deprotonated forms of subunit c provide the structural basis for an explicit mechanism to explain coupling of proton translocation by F0 to the rotation of subunits within the core of F1. Rotation of these subunits within F1 causes the catalytic conformational changes in the active sites of F1 that result in ATP synthesis.
PubMed: 10580496
DOI: 10.1038/46224
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

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