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Mechanism of potassium ion uptake by the Na+/K+-ATPase

机译:Na + / K + -ATPase吸收钾离子的机理

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The Na+/K+-ATPase restores sodium (Na+) and potassium (K+) electrochemical gradients dissipated by action potentials and ion-coupled transport processes. As ions are transported, they become transiently trapped between intracellular and extracellular gates. Once the external gate opens, three Na+ ions are released, followed by the binding and occlusion of two K+ ions. While the mechanisms of Na+ release have been well characterized by the study of transient Na+ currents, smaller and faster transient currents mediated by external K+ have been more difficult to study. Here we show that external K+ ions travelling to their binding sites sense only a small fraction of the electric field as they rapidly and simultaneously become occluded. Consistent with these results, molecular dynamics simulations of a pump model show a wide water-filled access channel connecting the binding site to the external solution. These results suggest a mechanism of K+ gating different from that of Na+ occlusion.
机译:Na + / K + -ATPase还原钠(Na + )和钾(K + )电化学梯度被动作电位和离子耦合的传输过程所耗散。随着离子的运输,它们被瞬态捕获在细胞内和细胞外门之间。外门打开后,会释放出三个Na + 离子,然后结合和吸附两个K + 离子。尽管通过研究Na + 瞬态电流已经很好地表征了Na + 释放的机理,但是由外部K + 更加难以研究。在这里,我们表明,当外部K + 离子迅速并同时被吸留时,到达其结合位点的外部K +离子只感应到一小部分电场。与这些结果一致,泵模型的分子动力学模拟显示了一个宽泛的充满水的通道,将结合位点连接到外部溶液。这些结果表明K + 门控机制与Na + 闭塞机制不同。

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