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天然和克隆的心脏钠钙交换体在钠离子转运过程中的电荷移动。

Charge movement during Na+ translocation by native and cloned cardiac Na+/Ca2+ exchanger.

作者信息

Hilgemann D W, Nicoll D A, Philipson K D

机构信息

Department of Physiology, University of Texas Southwestern Medical Center, Dallas 75235.

出版信息

Nature. 1991 Aug 22;352(6337):715-8. doi: 10.1038/352715a0.

Abstract

Na+/Ca2+ exchange is electrogenic and moves one net positive charge per cycle. Although the cardiac exchanger has a three-to-one Na+/Ca2+ stoichiometry, details of the reaction cycle are not well defined. Here we associate Na+ translocation by the cardiac exchanger with positive charge movement in giant membrane patches from cardiac myocytes and oocytes expressing the cloned cardiac Na+/Ca2+ exchanger. The charge movements are initiated by step increments of the cytoplasmic Na+ concentration in the absence of Ca2+. Giant patches from control oocytes lack both steady-state Na+/Ca2+ exchange current (INaCa) and Na(+)-induced charge movements. Charge movements indicate about 400 exchangers per micron 2 in guinea-pig sarcolemma. Fully activated INaCa densities (20-30 microA cm-2) indicate maximum turnover rates of 5,000 s-1. As has been predicted for consecutive exchange models, the apparent ion affinities of steady state INaCa increase as the counterion concentrations are decreased. Consistent with an electroneutral Ca2+ translocation, we find that voltage dependence of INaCa in both directions is lost as Ca2+ concentration is decreased. The principal electrogenic step seems to be at the extracellular end of the Na+ translocation pathway.

摘要

钠钙交换是生电的,每个循环转运一个净正电荷。虽然心脏交换体的钠钙化学计量比为3:1,但反应循环的细节尚未明确界定。在此,我们将心脏交换体的钠转运与来自表达克隆的心脏钠钙交换体的心肌细胞和卵母细胞的巨大膜片上的正电荷移动联系起来。电荷移动由无钙离子时细胞质钠浓度的逐步增加引发。对照卵母细胞的巨大膜片既缺乏稳态钠钙交换电流(INaCa),也缺乏钠诱导的电荷移动。电荷移动表明豚鼠肌膜中每平方微米约有400个交换体。完全激活的INaCa密度(20 - 30微安/平方厘米)表明最大周转率为5000次/秒。正如连续交换模型所预测的,随着反离子浓度降低,稳态INaCa的表观离子亲和力增加。与电中性钙转运一致,我们发现随着钙离子浓度降低,INaCa在两个方向上的电压依赖性均消失。主要的生电步骤似乎位于钠转运途径的细胞外端。

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