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HCN2起搏器通道假定电压感受器中带电残基的功能作用。

Functional roles of charged residues in the putative voltage sensor of the HCN2 pacemaker channel.

作者信息

Chen J, Mitcheson J S, Lin M, Sanguinetti M C

机构信息

Department of Medicine, Division of Cardiology and Eccles Program in Human Molecular Biology and Genetics, University of Utah, Salt Lake City, Utah 84112-5330, USA.

出版信息

J Biol Chem. 2000 Nov 17;275(46):36465-71. doi: 10.1074/jbc.M007034200.

Abstract

Hyperpolarization-activated, cyclic nucleotide-gated (HCN) channels contribute to pacemaking activity in specialized neurons and cardiac myocytes. HCN channels have a structure similar to voltage-gated K(+) channels but have a much larger putative S4 transmembrane domain and open in response to membrane hyperpolarization instead of depolarization. As an initial attempt to define the structural basis of HCN channel gating, we have characterized the functional roles of the charged residues in the S2, S3, and S4 transmembrane domains. The nine basic residues and a single Ser in S4 were mutated individually to Gln, and the function of mutant channels was analyzed in Xenopus oocytes using two-microelectrode voltage clamp techniques. Surface membrane expression of hemagglutinin-epitope-tagged channel proteins was examined by chemiluminescence. Our results suggest that 1) Lys-291, Arg-294, Arg-297, and Arg-300 contribute to the voltage dependence of gating but not to channel folding or trafficking to the surface membrane; 2) Lys-303 and Ser-306 are essential for gating, but not for channel folding/trafficking; 3) Arg-312 is important for folding but not gating; and 4) Arg-309, Arg-315, and Arg-318 are crucial for normal protein folding/trafficking and may charge-pair with Asp residues located in the S2 and S3 domains.

摘要

超极化激活的环核苷酸门控(HCN)通道参与特殊神经元和心肌细胞的起搏活动。HCN通道的结构与电压门控K(+)通道相似,但具有大得多的假定S4跨膜结构域,并且响应膜超极化而非去极化而开放。作为确定HCN通道门控结构基础的初步尝试,我们已对S2、S3和S4跨膜结构域中带电残基的功能作用进行了表征。将S4中的九个碱性残基和一个单一的丝氨酸分别突变为谷氨酰胺,并使用双微电极电压钳技术在非洲爪蟾卵母细胞中分析突变通道的功能。通过化学发光检查血凝素表位标记的通道蛋白的表面膜表达。我们的结果表明:1)赖氨酸-291、精氨酸-294、精氨酸-297和精氨酸-300有助于门控的电压依赖性,但对通道折叠或转运至表面膜没有影响;2)赖氨酸-303和丝氨酸-306对门控至关重要,但对通道折叠/转运并非如此;3)精氨酸-312对折叠很重要,但对门控不重要;4)精氨酸-309、精氨酸-315和精氨酸-318对正常蛋白质折叠/转运至关重要,并且可能与位于S2和S3结构域中的天冬氨酸残基形成电荷对。

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