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ClC氯离子通道中离子传导与门控的结构基础。

Structural basis for ion conduction and gating in ClC chloride channels.

作者信息

Dutzler Raimund

机构信息

Department of Biochemistry, University of Zurich, Winterthurerstr. 190, CH-8057 Zurich, Switzerland.

出版信息

FEBS Lett. 2004 Apr 30;564(3):229-33. doi: 10.1016/S0014-5793(04)00210-8.

Abstract

Members of the ClC family of voltage-gated chloride channels are found from bacteria to mammals with a considerable degree of conservation in the membrane-inserted, pore-forming region. The crystal structures of the ClC channels of Escherichia coli and Salmonella typhimurium provide a structural framework for the entire family. The ClC channels are homodimeric proteins with an overall rhombus-like shape. Each ClC dimer has two pores each contained within a single subunit. The ClC subunit consists of two roughly repeated halves that span the membrane with opposite orientations. This antiparallel architecture defines a chloride selectivity filter within the 15-A neck of a hourglass-shaped pore. Three Cl(-) binding sites within the selectivity filter stabilize ions by interactions with alpha-helix dipoles and by chemical interactions with nitrogen atoms and hydroxyl groups of residues in the protein. The Cl(-) binding site nearest the extracellular solution can be occupied either by a Cl(-) ion or by a glutamate carboxyl group. Mutations of this glutamate residue in Torpedo ray ClC channels alter gating in electrophysiological assays. These findings reveal a form of gating in which the glutamate carboxyl group closes the pore by mimicking a Cl(-) ion.

摘要

电压门控氯离子通道ClC家族的成员在从细菌到哺乳动物的生物中均有发现,其膜插入的成孔区域具有相当程度的保守性。大肠杆菌和鼠伤寒沙门氏菌的ClC通道晶体结构为整个家族提供了结构框架。ClC通道是具有整体菱形形状的同二聚体蛋白。每个ClC二聚体有两个孔,每个孔位于单个亚基内。ClC亚基由两个大致重复的部分组成,它们以相反的方向跨膜。这种反平行结构在沙漏形孔的15埃颈部定义了一个氯离子选择性过滤器。选择性过滤器内的三个Cl⁻结合位点通过与α-螺旋偶极子的相互作用以及与蛋白质中残基的氮原子和羟基的化学相互作用来稳定离子。最靠近细胞外溶液的Cl⁻结合位点可以被一个Cl⁻离子或一个谷氨酸羧基占据。电鳐ClC通道中这个谷氨酸残基的突变在电生理实验中改变了门控。这些发现揭示了一种门控形式,其中谷氨酸羧基通过模拟Cl⁻离子来关闭孔。

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