首页> 美国卫生研究院文献>The Journal of Physiology >Potassium-potassium exchange as part of the over-all reaction mechanism of the sodium pump of the human red blood cell.
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Potassium-potassium exchange as part of the over-all reaction mechanism of the sodium pump of the human red blood cell.

机译:钾-钾交换是人类红细胞钠泵总体反应机制的一部分。

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摘要

When the efflux components of the Na-K exchange and K-K exchange are measured under identical conditions, the apparent K 1/2 (the concentration of K at which the velocity is half-maximal) for external K of the two processes differ. The discrepancy diminishes when the measurements are made in solutions containing low concentrations of Na, and in these solutions the uncoupled Na efflux is also partially suppressed. It is possible to demonstrate an uncoupled K efflux into solutions free of Na and K. This uncoupled efflux is also partially inhibited by low concentrations of external Na. At high enough concentrations, intracellular Na completely inhibits the K-K exchange. Inhibition of the K-K exchange by cell Na is competitive with cell K, and inhibition of the Na-K exchange by cell K is competitive with cell Na. In each case the characteristics of the competition suggest that both ions competitively interact with sites on the same enzyme form. The Albers-Post model of the Na-K pump reaction mechanism, modified to account for the uncoupled Na and K efflux, accounts in detail for these observations. If the K-K exchange is part of the over-all Na-K exchange, as indicated by the findings, pump models in which Na must add to the pump at the inside before K is released are excluded.
机译:当在相同条件下测量Na-K交换和K-K交换的外排成分时,两个过程的外部K的表观K 1/2(速度为最大速度的K的浓度)不同。当在含有低浓度Na的溶液中进行测量时,差异会减小,并且在这些溶液中,未耦合的Na外排也被部分抑制。有可能证明解耦的K流出进入不含Na和K的溶液中。这种解耦的流出也被低浓度的外部Na部分抑制。在足够高的浓度下,细胞内Na会完全抑制K-K交换。细胞Na对K-K交换的抑制与细胞K竞争,而细胞K对Na-K交换的抑制与细胞Na竞争。在每种情况下,竞争的特征都表明两种离子竞争性地相互作用于同一酶形式上的位点。对Na-K泵反应机理的Albers-Post模型进行了修改,以解决Na和K的非耦合流出问题,详细说明了这些观察结果。如调查结果所示,如果K-K交换是全部Na-K交换的一部分,则排除其中Na必须在释放K之前在泵内部添加Na的泵模型。

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