4.8 Article

Sequential substitution of K+ bound to Na+, K+-ATPase visualized by X-ray crystallography

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NATURE COMMUNICATIONS
卷 6, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms9004

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  1. JSPS [2009B0025, 2013A0049]
  2. Danish Medical Research Foundation
  3. FI/Danish-Japanese cooperation program from The Danish Agency for Science Technology and Innovation
  4. Novo Nordisk Foundation
  5. Novo Nordisk Fonden [NNF13OC0006555] Funding Source: researchfish

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Na+, K+-ATPase transfers three Na+ from the cytoplasm into the extracellular medium and two K+ in the opposite direction per ATP hydrolysed. The binding and release of Na+ and K+ are all thought to occur sequentially. Here we demonstrate by X-ray crystallography of the ATPase in E2 center dot MgF42-center dot 2K(+), a state analogous to E2 center dot Pi center dot 2K(+), combined with isotopic measurements, that the substitution of the two K+ with congeners in the extracellular medium indeed occurs at different rates, substantially faster at site II. An analysis of thermal movements of protein atoms in the crystal shows that the M3-M4E helix pair opens and closes the ion pathway leading to the extracellular medium, allowing K+ at site II to be substituted first. Taken together, these results indicate that site I K+ is the first cation to bind to the empty cation-binding sites after releasing three Na+.

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