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2YN9

Cryo-EM structure of gastric H+,K+-ATPase with bound rubidium

Summary for 2YN9
Entry DOI10.2210/pdb2yn9/pdb
Related1IWC 1IWF 2XZB
EMDB information2219
DescriptorPOTASSIUM-TRANSPORTING ATPASE ALPHA CHAIN 1, POTASSIUM-TRANSPORTING ATPASE SUBUNIT BETA (2 entities in total)
Functional Keywordshydrolase, p-type atpase, proton pump
Biological sourceSUS SCROFA (PIG)
More
Cellular locationCell membrane; Multi-pass membrane protein: P19156
Cell membrane; Single-pass type II membrane protein: P18434
Total number of polymer chains2
Total formula weight147513.53
Authors
Abe, K.,Tani, K.,Friedrich, T.,Fujiyoshi, Y. (deposition date: 2012-10-13, release date: 2012-11-07, Last modification date: 2014-07-16)
Primary citationAbe, K.,Tani, K.,Friedrich, T.,Fujiyoshi, Y.
Cryo-Em Structure of Gastric H+,K+-ATPase with a Single Occupied Cation-Binding Site.
Proc.Natl.Acad.Sci.USA, 109:18401-, 2012
Cited by
PubMed Abstract: Gastric H(+),K(+)-ATPase is responsible for gastric acid secretion. ATP-driven H(+) uptake into the stomach is efficiently accomplished by the exchange of an equal amount of K(+), resulting in a luminal pH close to 1. Because of the limited free energy available for ATP hydrolysis, the stoichiometry of transported cations is thought to vary from 2H(+)/2K(+) to 1H(+)/1K(+) per hydrolysis of one ATP molecule as the luminal pH decreases, although direct evidence for this hypothesis has remained elusive. Here, we show, using the phosphate analog aluminum fluoride (AlF) and a K(+) congener (Rb(+)), the 8-Å resolution structure of H(+),K(+)-ATPase in the transition state of dephosphorylation, (Rb(+))E2~AlF, which is distinct from the preceding Rb(+)-free E2P state. A strong density located in the transmembrane cation-binding site of (Rb(+))E2~AlF highly likely represents a single bound Rb(+) ion, which is clearly different from the Rb(+)-free E2AlF or K(+)-bound (K(+))E2~AlF structures. Measurement of radioactive (86)Rb(+) binding suggests that the binding stoichiometry varies depending on the pH, and approximately half of the amount of Rb(+) is bound under acidic crystallization conditions compared with at a neutral pH. These data represent structural and biochemical evidence for the 1H(+)/1K(+)/1ATP transport mode of H(+),K(+)-ATPase, which is a prerequisite for generation of the 10(6)-fold proton gradient in terms of thermodynamics. Together with the released E2P-stabilizing interaction between the β subunit's N terminus and the P domain observed in the (Rb(+))E2~AlF structure, we propose a refined vectorial transport model of H(+),K(+)-ATPase, which must prevail against the highly acidic state of the gastric lumen.
PubMed: 23091039
DOI: 10.1073/PNAS.1212294109
PDB entries with the same primary citation
Experimental method
ELECTRON CRYSTALLOGRAPHY (8 Å)
Structure validation

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数据于2024-10-30公开中

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