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Critical role of ?-phosphate in structural transition of Na,K-ATPase upon ATP binding.


ABSTRACT: Active transport of sodium and potassium ions by Na,K-ATPase is accompanied by the enzyme conformational transition between E1 and E2 states. ATP and ADP bind to Na,K-ATPase in the E1 conformation with similar affinity but the properties of enzyme in complexes with these nucleotides are different. We have studied thermodynamics of Na,K-ATPase binding with adenine nucleotides at different temperatures using isothermal titration calorimetry. Our data indicate that ?-phosphate is involved in complex formation by increasing the affinity of adenine nucleotides to Na,K-ATPase by an order of magnitude, while ?-phosphate does not affect it. ATP binding to Na,K-ATPase in contrast to ADP binding generates a structural transition in the enzyme, which is consistent with the movement of a significant portion of the surface area to a solvent-protected state. We propose that ATP binding leads to convergence of the nucleotide-binding and phosphorylation domains transferring the enzyme from the "E1-open" to "E1-closed" conformation ready for phosphorylation.

SUBMITTER: Petrushanko IY 

PROVIDER: S-EPMC4044624 | biostudies-literature | 2014

REPOSITORIES: biostudies-literature

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Critical role of γ-phosphate in structural transition of Na,K-ATPase upon ATP binding.

Petrushanko Irina Yu IY   Mitkevich Vladimir A VA   Anashkina Anastasia A AA   Klimanova Elizaveta A EA   Dergousova Elena A EA   Lopina Olga D OD   Makarov Alexander A AA  

Scientific reports 20140604


Active transport of sodium and potassium ions by Na,K-ATPase is accompanied by the enzyme conformational transition between E1 and E2 states. ATP and ADP bind to Na,K-ATPase in the E1 conformation with similar affinity but the properties of enzyme in complexes with these nucleotides are different. We have studied thermodynamics of Na,K-ATPase binding with adenine nucleotides at different temperatures using isothermal titration calorimetry. Our data indicate that β-phosphate is involved in comple  ...[more]

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