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膜电位对由“电中性”离子载体A23187和离子霉素催化的二价阳离子转运的影响。

Effect of membrane potential on divalent cation transport catalyzed by the "electroneutral" ionophores A23187 and ionomycin.

作者信息

Fasolato C, Pozzan T

机构信息

Institute of General Pathology, Consiglio Nazionale delle Ricerche Unit of Biomembranes, University of Padova, Italy.

出版信息

J Biol Chem. 1989 Nov 25;264(33):19630-6.

PMID:2479637
Abstract

Depolarization of plasma membrane potential has a potent inhibitory effect on divalent cation influx catalyzed by the carboxylic ionophores ionomycin and A23187. This effect is observed in different cell models and does not depend on either inhibition of Ca2+-activated cation channels or activation of Ca2+ extrusion mechanisms as suggested previously. A dependence of divalent cation influx on the magnitude of membrane potential is observed also in artificial liposomes. The inhibition of ionophore-dependent divalent cation transport by membrane potential depolarization can be modified varying the ionophore concentration and the external pH. These findings suggest that both neutral and positively charged ionophore-cation complexes can cross the plasma membrane and that their contribution to the overall transport process can be varied according to the experimental conditions.

摘要

质膜电位的去极化对由羧酸离子载体离子霉素和A23187催化的二价阳离子内流具有强大的抑制作用。在不同的细胞模型中都观察到了这种效应,并且它并不像之前所认为的那样依赖于对Ca2+激活的阳离子通道的抑制或Ca2+外排机制的激活。在人工脂质体中也观察到二价阳离子内流对膜电位大小的依赖性。膜电位去极化对离子载体依赖性二价阳离子转运的抑制作用可通过改变离子载体浓度和外部pH值来改变。这些发现表明,中性和带正电荷的离子载体 - 阳离子复合物都可以穿过质膜,并且它们对整体转运过程的贡献可以根据实验条件而变化。

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