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由CLC氯离子通道的原核同源物介导的离子电流。

Ionic currents mediated by a prokaryotic homologue of CLC Cl- channels.

作者信息

Accardi Alessio, Kolmakova-Partensky Ludmila, Williams Carole, Miller Christopher

机构信息

Department of Biochemistry, Howard Hughes Medical Institute, Brandeis University, Waltham, MA 02454, USA.

出版信息

J Gen Physiol. 2004 Feb;123(2):109-19. doi: 10.1085/jgp.200308935. Epub 2004 Jan 12.

Abstract

CLC-ec1 is an E. coli homologue of the CLC family of Cl- channels, which are widespread throughout eukaryotic organisms. The structure of this membrane protein is known, and its physiological role has been described, but our knowledge of its functional characteristics is severely limited by the absence of electrophysiological recordings. High-density reconstitution and incorporation of crystallization-quality CLC-ec1 in planar lipid bilayers failed to yield measurable CLC-ec1 currents due to porin contamination. A procedure developed to prepare the protein at a very high level of purity allowed us to measure macroscopic CLC-ec1 currents in lipid bilayers. The current is Cl- selective, and its pH dependence mimics that observed with a 36Cl- flux assay in reconstituted liposomes. The unitary conductance is estimated to be <0.2 pS. Surprisingly, the currents have a subnernstian reversal potential in a KCl gradient, indicating imperfect selectivity for anions over cations. Mutation of a conserved glutamate residue found in the selectivity filter eliminates the pH-dependence of both currents and 36Cl- flux and appears to trap CLC-ec1 in a constitutively active state. These effects correlate well with known characteristics of eukaryotic CLC channels. The E148A mutant displays nearly ideal Cl- selectivity.

摘要

CLC-ec1是氯离子通道CLC家族的大肠杆菌同源物,该家族在真核生物中广泛存在。这种膜蛋白的结构已知,其生理作用也已被描述,但由于缺乏电生理记录,我们对其功能特性的了解严重受限。由于孔蛋白污染,在平面脂质双分子层中进行高密度重组并掺入结晶质量的CLC-ec1未能产生可测量的CLC-ec1电流。一种用于制备高纯度蛋白质的方法使我们能够在脂质双分子层中测量宏观的CLC-ec1电流。该电流具有氯离子选择性,其pH依赖性与在重组脂质体中用36Cl-通量测定法观察到的情况相似。单位电导估计小于0.2 pS。令人惊讶的是,在氯化钾梯度中,电流具有亚能斯特反转电位,表明对阴离子的选择性比对阳离子的选择性不完全。在选择性过滤器中发现的一个保守谷氨酸残基发生突变,消除了电流和36Cl-通量的pH依赖性,并且似乎使CLC-ec1处于组成型激活状态。这些效应与真核CLC通道的已知特征密切相关。E148A突变体表现出几乎理想的氯离子选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a3ef/2217429/45047a016d17/200308935f1.jpg

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