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关于细胞膜中阿米洛利敏感的非电生性Na⁺-H⁺交换机制:Na⁺/H⁺反向转运还是Na⁺/OH⁻同向转运?

On the mechanism of amiloride-sensitive nonelectrogenic Na+-H+ exchange in cell membranes: Na+/H+ antiport or Na+/OH- symport?

作者信息

Markin V S

机构信息

Institute of Electrochemistry, Academy of Sciences of the USSR, Moscow.

出版信息

Gen Physiol Biophys. 1987 Oct;6(5):449-68.

PMID:2448183
Abstract

The amiloride-sensitive and nonelectrogenic Na+-H+ exchange system of eucaryotic cells is currently a topic of great interest. The results of membrane transport in the presence of protons are shown to be similar in two cases: when H+ is transferred in one direction or OH- -in the opposite direction. Therefore, in principle Na+-H+ exchange can be performed by two different mechanisms: Na+/H+ antiport or Na+/OH- symport. However, the kinetic properties of these mechanisms turn out to be quite different. The present study analyses the simplest models of antiport and symport and delineates their important differences. For this purpose the Lineweaver-Burk plot presented as Na+ reverse flow entering a cell 1/JNa (or H+ leaving a cell) versus the reverse concentration of Na+ outside 1/[Na+]0 is most useful. If a series of lines with external pH as a parameter have a common point of intersection placed on the ordinate, it indicates the availability of Na+/H+ antiport. In case of Na+/OH- symport a point of intersection is shifted to the left of the ordinate axis. According to data available in the literature, Na+/H+ antiport manifests itself in dog kidney cells and in hamster lung fibroblasts. In the skeletal muscles of chicken and in rat thymus lymphocytes however, a Na+/OH- symport is apparently present.

摘要

真核细胞中对阿米洛利敏感且无电生成作用的Na⁺-H⁺交换系统目前是一个备受关注的话题。在存在质子的情况下,膜转运的结果在两种情况下显示相似:当H⁺向一个方向转移或OH⁻向相反方向转移时。因此,原则上Na⁺-H⁺交换可以通过两种不同机制进行:Na⁺/H⁺反向转运或Na⁺/OH⁻同向转运。然而,这些机制的动力学特性结果却大不相同。本研究分析了反向转运和同向转运的最简单模型,并描述了它们的重要差异。为此,以进入细胞的Na⁺反向流动1/JNa(或离开细胞的H⁺)对细胞外Na⁺的反向浓度1/[Na⁺]₀表示的Lineweaver-Burk图最为有用。如果以外部pH为参数的一系列线有一个共同的交点位于纵坐标上,则表明存在Na⁺/H⁺反向转运。在Na⁺/OH⁻同向转运的情况下,交点会移到纵坐标轴的左侧。根据文献中的数据,Na⁺/H⁺反向转运在犬肾细胞和仓鼠肺成纤维细胞中表现出来。然而,在鸡的骨骼肌和大鼠胸腺淋巴细胞中,显然存在Na⁺/OH⁻同向转运。

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