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氯离子通道ClC中的离子转运途径与门控

Ion transit pathways and gating in ClC chloride channels.

作者信息

Yin Jian, Kuang Zhifeng, Mahankali Uma, Beck Thomas L

机构信息

Department of Chemistry, University of Cincinnati, Cincinnati, Ohio 45221-0172, USA.

出版信息

Proteins. 2004 Nov 1;57(2):414-21. doi: 10.1002/prot.20208.

Abstract

ClC chloride channels possess a homodimeric structure in which each monomer contains an independent chloride ion pathway. ClC channel gating is regulated by chloride ion concentration, pH and voltage. Based on structural and physiological evidence, it has been proposed that a glutamate residue on the extracellular end of the selectivity filter acts as a fast gate. We utilized a new search algorithm that incorporates electrostatic information to explore the ion transit pathways through wild-type and mutant bacterial ClC channels. Examination of the chloride ion permeation pathways supports the importance of the glutamate residue in gating. An external chloride binding site previously postulated in physiological experiments is located near a conserved basic residue adjacent to the gate. In addition, access pathways are found for proton migration to the gate, enabling pH control at hyperpolarized membrane potentials. A chloride ion in the selectivity filter is required for the pH-dependent gating mechanism.

摘要

氯离子通道(ClC)具有同二聚体结构,其中每个单体都包含一条独立的氯离子通道。ClC通道的门控受氯离子浓度、pH值和电压的调节。基于结构和生理学证据,有人提出选择性过滤器细胞外端的一个谷氨酸残基充当快速门控。我们利用一种结合静电信息的新搜索算法,来探索野生型和突变型细菌ClC通道的离子转运途径。对氯离子渗透途径的研究支持了谷氨酸残基在门控中的重要性。生理实验中先前推测的一个外部氯离子结合位点位于靠近门控相邻的一个保守碱性残基附近。此外,还发现了质子迁移到门控的通道,从而能够在超极化膜电位下进行pH调节。pH依赖性门控机制需要选择性过滤器中的一个氯离子。

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