解除线粒体氯离子通道的迷雾

Katarina Mackova, A. Mišák, Z. Tomášková
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引用次数: 1

摘要

通过线粒体氯离子通道的电流在1987年首次被描述。随后,在不同来源的线粒体中发现了几种可渗透氯离子和其他阴离子的离子通道。然而,越来越多的电生理学研究,在氯离子通道领域只产生了更多的模糊而不是秩序。两项不同的研究略微降低了这种不确定性:一项实验表明氯离子通道在线粒体膜电位振荡过程中发挥了重要作用,另一项实验表明氯离子胞内离子通道(CLIC)蛋白在心脏线粒体膜中定位。我们最近发表的单通道电生理实验与重组CLIC蛋白的通道活性非常吻合。实验证据似乎是不可避免的,尽管慢慢地集中在单通道活性和线粒体氯通道蛋白的身份之间的联系上。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lifting the Fog over Mitochondrial Chloride Channels
The current through mitochondrial chloride channels was first described in 1987. Subsequently, several types of ion channels permeable to chloride and other anions were found in the mitochondria of different origins. The increasing number of electrophysi - ological studies, however, yielded only more ambiguity rather than order in the field of chloride channels. This uncertainty was slightly reduced by two different studies: experi - ments that showed a significant role of chloride channels in the process of mitochondrial membrane potential oscillations and experiments that localized chloride intracellular ion channel (CLIC) proteins in cardiac mitochondrial membranes. Our recently published single-channel electrophysiological experiments are well in line with the channel activity of recombinant CLIC proteins. The experimental evidence seems to be inevitably, though slowly converging on a connection between single-channel activity and the identity of the mitochondrial chloride channel protein.
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