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六个真核电压门控钾通道Kv1.1 - Kv1.6孔环结构域的一组同源模型。

A set of homology models of pore loop domain of six eukaryotic voltage-gated potassium channels Kv1.1-Kv1.6.

作者信息

Liu Hsuan-Liang, Lin Jin-Chung

机构信息

Department of Chemical Engineering and Graduate Institute of Biotechnology, National Taipei University of Technology, No. 1 Sec. 3 Chung-Hsiao E. Rd., Taipei, Taiwan 10608.

出版信息

Proteins. 2004 May 15;55(3):558-67. doi: 10.1002/prot.20065.


DOI:10.1002/prot.20065
PMID:15103620
Abstract

Homology models of the pore loop domain of six eukaryotic potassium channels, Kv1.1-Kv1.6, were generated based on the crystallographic structure of KcsA. The results of amino acid sequence alignment indicate that these Kv channels are composed of two structurally and functionally independent domains: the N-terminal 'voltage sensor' domain and the C-terminal 'pore loop' domain. The homology models reveal that the pore loop domains of these Kv channels exhibit similar folds to those of KcsA. The structural features and specific packing of aromatic residues around the selectivity filter of these Kv channels are nearly identical to those of KcsA, whereas most of the structural variations occur in the turret as well as in the inner and outer helices. The distribution of polar and nonpolar side chains on the surfaces of the KcsA and Kv channels reveals that they exhibit a segregation of side chains common to most integral membrane proteins. As the hydrogen bond between Glu71 and Asp80 in KcsA plays an important role in stabilizing the channel, the substituted Val residue in the Kv family corresponding to Glu71 of KcsA stabilizes the channel by making hydrophobic contact with Tyr residue from the signature sequence of the selectivity filter. The homology models of these Kv channels provide particularly attractive subjects for further structure-based studies.

摘要

基于KcsA的晶体结构生成了六种真核钾通道(Kv1.1 - Kv1.6)孔环结构域的同源模型。氨基酸序列比对结果表明,这些Kv通道由两个结构和功能上独立的结构域组成:N端的“电压感受器”结构域和C端的“孔环”结构域。同源模型显示,这些Kv通道的孔环结构域与KcsA的孔环结构域具有相似的折叠方式。这些Kv通道选择性过滤器周围芳香族残基的结构特征和特定堆积方式与KcsA几乎相同,而大多数结构变化发生在炮塔以及内螺旋和外螺旋中。KcsA和Kv通道表面极性和非极性侧链的分布表明,它们呈现出大多数整合膜蛋白共有的侧链分离现象。由于KcsA中Glu71和Asp80之间的氢键在稳定通道方面起着重要作用,Kv家族中与KcsA的Glu71对应的取代Val残基通过与选择性过滤器特征序列中的Tyr残基进行疏水接触来稳定通道。这些Kv通道的同源模型为进一步基于结构的研究提供了特别有吸引力的研究对象。

相似文献

[1]
A set of homology models of pore loop domain of six eukaryotic voltage-gated potassium channels Kv1.1-Kv1.6.

Proteins. 2004-5-15

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[3]
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[4]
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[5]
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[7]
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[9]
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[10]
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