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心脏钠/钙交换体的多种转运模式

Multiple transport modes of the cardiac Na+/Ca2+ exchanger.

作者信息

Kang Tong Mook, Hilgemann Donald W

机构信息

Department of Physiology, Center for Molecular Medicine, Samsung Biomedical Research Institute, Sungkyunkwan University School of Medicine, Suwon 440-746, Korea.

出版信息

Nature. 2004 Feb 5;427(6974):544-8. doi: 10.1038/nature02271.

Abstract

The cardiac Na+/Ca2+ exchanger (NCX1; ref. 2) is a bi-directional Ca2+ transporter that contributes to the electrical activity of the heart. When, and if, Ca2+ is exported or imported depends on the Na+/Ca2+ exchange ratio. Whereas a ratio of 3:1 (Na+:Ca2+) has been indicated by Ca2+ flux equilibrium studies, a ratio closer to 4:1 has been indicated by exchange current reversal potentials. Here we show, using an ion-selective electrode technique to quantify ion fluxes in giant patches, that ion flux ratios are approximately 3.2 for maximal transport in either direction. With Na+ and Ca2+ on both sides of the membrane, net current and Ca2+ flux can reverse at different membrane potentials, and inward current can be generated in the absence of cytoplasmic Ca2+, but not Na+. We propose that NCX1 can transport not only 1 Ca2+ or 3 Na+ ions, but also 1 Ca2+ with 1 Na+ ion at a low rate. Therefore, in addition to the major 3:1 transport mode, import of 1 Na+ with 1 Ca2+ defines a Na+-conducting mode that exports 1 Ca2+, and an electroneutral Ca2+ influx mode that exports 3 Na+. The two minor transport modes can potentially determine resting free Ca2+ and background inward current in heart.

摘要

心脏钠钙交换体(NCX1;参考文献2)是一种双向钙转运体,对心脏的电活动有影响。钙的输出或输入取决于钠钙交换比例,且何时以及是否发生这种情况尚不清楚。虽然通过钙通量平衡研究表明钠钙交换比例为3:1(钠:钙),但通过交换电流反转电位表明该比例更接近4:1。在这里,我们使用离子选择性电极技术对巨膜片上的离子通量进行定量分析,结果表明,在任一方向上进行最大转运时,离子通量比例约为3.2。当膜两侧同时存在钠和钙时,净电流和钙通量可在不同膜电位下反转,并且在没有细胞质钙但有钠的情况下可产生内向电流。我们提出,NCX1不仅可以转运1个钙离子或3个钠离子,还可以以较低速率转运1个钙离子和1个钠离子。因此,除了主要的3:1转运模式外,1个钠离子与1个钙离子的输入定义了一种输出1个钙离子的钠传导模式,以及一种输出3个钠离子的电中性钙内流模式。这两种次要转运模式可能决定心脏中的静息游离钙和背景内向电流。

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