首页> 外文期刊>Trends in Neurosciences >The structural basis of ClC chloride channel function.
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The structural basis of ClC chloride channel function.

机译:ClC氯化物通道功能的结构基础。

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摘要

ClC channels constitute a large family of Cl(-)-selective ion channels that are present in diverse organisms. The channels have a complex gating behavior, in which channel opening and closing is tightly coupled to ion permeation. Recent success in the structure determination of bacterial channels has revealed the overall architecture of this family and provided important insight into ion selectivity and gating. The ClC channels are homodimers, with each subunit containing an ion conduction pore. In the narrow selectivity filter of each pore, Cl(-) are bound to several sites through electrostatic interactions with helix dipoles and the partial charges of protein residues. In the closed conformation of the channel, a conserved glutamate residue occupies one of the ion-binding sites; on channel opening, this glutamate residue moves out of the binding site, thereby making room for an additional Cl(-) ion.
机译:ClC通道构成了存在于各种生物中的Cl(-)选择离子通道的大家族。通道具有复杂的选通行为,其中通道的打开和关闭与离子渗透紧密耦合。细菌通道结构测定的最新成功揭示了该家族的整体结构,并为离子选择性和门控提供了重要见解。 ClC通道是同型二聚体,每个亚基包含一个离子传导孔。在每个孔的狭窄选择性过滤器中,Cl(-)通过与螺旋偶极子的静电相互作用以及蛋白质残基的部分电荷与多个位点结合。在通道的闭合构象中,保守的谷氨酸残基占据离子结合位点之一;在一个离子结合位点中,谷氨酸残基占据一个离子结合位点。在通道开放时,该谷氨酸残基移出结合位点,从而为额外的Cl(-)离子腾出空间。

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