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氯离子通道ClC-2的四级结构。

Quaternary structure of the chloride channel ClC-2.

作者信息

Ramjeesingh M, Li C, Huan L J, Garami E, Wang Y, Bear C E

机构信息

Research Institute in the Hospital for Sick Children, Toronto, Canada.

出版信息

Biochemistry. 2000 Nov 14;39(45):13838-47. doi: 10.1021/bi001282i.

Abstract

The chloride channel ClC-2 is thought to be essential for chloride homeostasis in neurons and critical for chloride secretion by the developing respiratory tract. In the present work, we investigated the quaternary structure of ClC-2 required to mediate chloride conduction. We found using chemical cross-linking and a novel PAGE system that tagged ClC-2 expressed in Sf9 cells exists as oligomers. Fusion of membranes from Sf9 cells expressing this protein confers double-barreled channel activity, with each pore exhibiting a unitary conductance of 32 pS. Polyhistidine-tagged ClC-2 from Sf9 cells can be purified as monomers, dimers, and tetramers. Purified, reconstituted ClC-2 monomers do not possess channel function whereas both purified ClC-2 dimers and tetramers do mediate chloride flux. In planar bilayers, reconstitution of dimeric ClC-2 leads to the appearance of a single, anion selective 32 pS pore, and tetrameric ClC-2 confers double-barreled channel activity similar to that observed in Sf9 membranes. These reconstitution studies suggest that a ClC-2 dimer is the minimum functional structure and that ClC-2 tetramers likely mediate double-barreled channel function.

摘要

氯离子通道ClC-2被认为对神经元中的氯离子稳态至关重要,且对发育中的呼吸道的氯离子分泌至关重要。在本研究中,我们研究了介导氯离子传导所需的ClC-2的四级结构。我们使用化学交联和一种新型PAGE系统发现,在Sf9细胞中表达的带有标签的ClC-2以寡聚体形式存在。表达该蛋白的Sf9细胞膜的融合赋予双孔通道活性,每个孔表现出32 pS的单位电导。来自Sf9细胞的多组氨酸标签的ClC-2可以被纯化成为单体、二聚体和四聚体。纯化的、重组的ClC-2单体不具备通道功能,而纯化的ClC-2二聚体和四聚体都能介导氯离子通量。在平面双层膜中,二聚体ClC-2重组导致出现一个单一的、阴离子选择性的32 pS孔,四聚体ClC-2赋予类似于在Sf9细胞膜中观察到的双孔通道活性。这些重组研究表明ClC-2二聚体是最小的功能结构,并且ClC-2四聚体可能介导双孔通道功能。

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