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细胞外和细胞内氯离子在蟾蜍皮肤顶端电扩散性氯离子途径激活中的作用。

Roles of external and cellular Cl- ions on the activation of an apical electrodiffusional Cl- pathway in toad skin.

作者信息

Procopio J, Lacaz-Vieira F

机构信息

Departamento de Fisiologia e Biofísica, Universidade de São Paulo, Brazil.

出版信息

J Membr Biol. 1990 Jul;117(1):57-67. doi: 10.1007/BF01871565.

Abstract

This study is concerned with the short-circuit current, Isc, responses of the Cl(-)-transporting cells of toad skin submitted to sudden changes of the external Cl- concentration, [Cl]o. Sudden changes of [Cl]o, carried out under apical membrane depolarization, allowed comparison of the roles of [Cl]o and [Cl]cell on the activation of the apical Cl- pathways. Equilibration of short-circuited skins symmetrically in K-Ringer's solutions of different Cl- concentrations permitted adjustment of [Cl]cell to different levels. For a given Cl- concentration (in the range of 11.7 to 117 mM) on both sides of a depolarized apical membrane, this structure exhibits a high Cl- permeability, P(Cl)apical. On the other hand, for the same range of [Cl]cell but with [Cl]o = 0, P(Cl)apical is reduced to negligible values. These observations indicate that when the apical membrane is depolarized P(Cl)apical is modulated by [Cl]o; in the absence of external Cl- ions, intracellular Cl- is not sufficient to activate P(Cl)apical. Computer simulation shows that the fast Cl- currents induced across the apical membrane by sudden shifts of [Cl]o from a control equilibrium value strictly follow the laws of electrodiffusion. For each experimental group, the computer-generated Isc versus [( Cl]cell - [Cl]o) curve which best fits the experimental data can only be obtained by a unique pair of P(Cl)apical and Rb (resistance of the basolateral membrane), thus allowing the calculation of these parameters. The electrodiffusional behavior of the net Cl- flux across the apical membrane supports the channel nature of the apical Cl- pathways in the Cl(-)-transporting cells. Cl- ions contribute significantly to the overall conductance of the basolateral membrane even in the presence of a high K concentration in the internal solution.

摘要

本研究关注蟾蜍皮肤中氯离子转运细胞的短路电流(Isc)对外部氯离子浓度([Cl]o)突然变化的响应。在顶端膜去极化条件下进行的[Cl]o突然变化,使得能够比较[Cl]o和[Cl]细胞在顶端氯离子通道激活中的作用。将短路皮肤对称地置于不同氯离子浓度的K - 林格氏溶液中,可使[Cl]细胞调整到不同水平。对于去极化顶端膜两侧给定的氯离子浓度(在11.7至117 mM范围内),该结构表现出高的顶端氯离子通透性P(Cl)apical。另一方面,对于相同的[Cl]细胞范围但[Cl]o = 0时,P(Cl)apical降低到可忽略不计的值。这些观察结果表明,当顶端膜去极化时,P(Cl)apical受[Cl]o调节;在没有外部氯离子的情况下,细胞内氯离子不足以激活P(Cl)apical。计算机模拟表明,[Cl]o从对照平衡值突然变化时,在顶端膜上诱导的快速氯离子电流严格遵循电扩散定律。对于每个实验组,只有通过唯一的一对P(Cl)apical和Rb(基底外侧膜电阻)才能获得最符合实验数据的计算机生成的Isc与[(Cl]细胞 - [Cl]o)曲线,从而允许计算这些参数。跨顶端膜的净氯离子通量的电扩散行为支持了氯离子转运细胞中顶端氯离子通道的通道性质。即使在内部溶液中存在高钾浓度时,氯离子对基底外侧膜的总电导也有显著贡献。

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