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钠钾泵部分反应的电压依赖性:微观模型的预测

Voltage dependence of partial reactions of the Na+/K+ pump: predictions from microscopic models.

作者信息

Läuger P, Apell H J

机构信息

Department of Biology, University of Konstanz, F.R.G.

出版信息

Biochim Biophys Acta. 1988 Nov 3;945(1):1-10. doi: 10.1016/0005-2736(88)90355-0.

Abstract

A theoretical treatment of the voltage dependence of electroneutral Na+-Na+ and K+-K+ exchange mediated by the Na+/K+ pump is given. The analysis is based on the Post-Albers reaction scheme in which the overall transport process is described as a sequence of conformational transitions and ion-binding and ion-release steps. The voltage dependence of the exchange rate is determined by a set of 'dielectric coefficients' reflecting the magnitude of charge translocations associated with individual reaction steps. Charge movement may result from conformational changes of the transport protein and/or from migration of ions in an access channel connecting the binding sites with the aqueous medium. It is shown that valuable mechanistic information may be obtained by studying the voltage dependence of transport rates at different (saturating and nonsaturating) ion concentrations.

摘要

本文给出了由钠钾泵介导的电中性钠-钠和钾-钾交换电压依赖性的理论处理方法。该分析基于波斯特-阿尔伯斯反应方案,其中整个转运过程被描述为一系列构象转变以及离子结合和离子释放步骤。交换速率的电压依赖性由一组“介电系数”决定,这些系数反映了与各个反应步骤相关的电荷转移量。电荷移动可能源于转运蛋白的构象变化和/或离子在连接结合位点与水相介质的通道中的迁移。结果表明,通过研究不同(饱和和非饱和)离子浓度下转运速率的电压依赖性,可以获得有价值的机制信息。

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