首页> 外文期刊>The Journal of Physiology >A conserved pore-lining glutamate as a voltage- and chloride-dependent gate in the ClC-2 chloride channel.
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A conserved pore-lining glutamate as a voltage- and chloride-dependent gate in the ClC-2 chloride channel.

机译:保守的孔壁谷氨酸盐作为ClC-2氯化物通道中依赖于电压和氯化物的门。

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摘要

ClC-2 is a ubiquitously expressed, two-pore homodimeric Cl- channel opened by hyperpolarisation. Little is known about its gating mechanisms. Crystallographic and functional studies in other ClC channels suggest that a conserved glutamate residue carboxylate side-chain can close protopores by interacting with a Cl--binding site in the pore. Competition for this site is thought to provide the molecular basis for gating by extracellular Cl-. We now show that ClC-2 gating depends upon intra- but not extracellular Cl- and that neutralisation of E217, the homologous pore glutamate, leads to loss of sensitivity to intracellular Cl- and voltage. Experiments testing for transient activation by extracellular protons demonstrate that E217 is not available for protonation in the closed channel state but becomes so after opening by hyperpolarisation. The results suggest that E217 is a hyperpolarisation-dependent protopore gate in ClC-2 and that access of intracellular Cl- to a site normally occupied by its side-chain in the pore stabilises the open state. A remaining hyperpolarisation-dependent gate might correspond to that closing both pores simultaneously in other ClC channels.
机译:ClC-2是通过超极化开放的普遍表达的两孔同二聚Cl-通道。人们对其门控机制知之甚少。其他ClC通道的晶体学和功能研究表明,保守的谷氨酸残基羧酸盐侧链可以通过与孔中的Cl-结合位点相互作用而封闭原孔。该位点的竞争被认为为细胞外Cl-的门控提供了分子基础。我们现在显示,ClC-2门控取决于细胞内而不是细胞外Cl-,并且中和E217(同源孔谷氨酸)会导致对细胞内Cl-和电压的敏感性下降。通过细胞外质子瞬时激活的实验测试表明,E217在闭合通道状态下不可用于质子化,但在通过超极化打开后变得如此。结果表明,E217是ClC-2中的超极化依赖性原生孔门,细胞内Cl-进入通常由其侧链在孔中占据的位点可稳定开放状态。剩余的依赖于超极化的门可能对应于同时关闭其他ClC通道中的两个孔的门。

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