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带有钾离子通道相互作用蛋白(KChIP)亚基的Kv4钾通道复合物的化学计量和生物物理特性是可变的,这取决于相对表达水平。

The stoichiometry and biophysical properties of the Kv4 potassium channel complex with K+ channel-interacting protein (KChIP) subunits are variable, depending on the relative expression level.

作者信息

Kitazawa Masahiro, Kubo Yoshihiro, Nakajo Koichi

机构信息

From the Division of Biophysics and Neurobiology, Department of Molecular Physiology, National Institute for Physiological Sciences, Okazaki, Aichi 444-8585, Japan and the Department of Physiological Sciences, Graduate University for Advanced Studies (SOKENDAI), Hayama, Kanagawa 240-0155, Japan.

From the Division of Biophysics and Neurobiology, Department of Molecular Physiology, National Institute for Physiological Sciences, Okazaki, Aichi 444-8585, Japan and the Department of Physiological Sciences, Graduate University for Advanced Studies (SOKENDAI), Hayama, Kanagawa 240-0155, Japan

出版信息

J Biol Chem. 2014 Jun 20;289(25):17597-609. doi: 10.1074/jbc.M114.563452. Epub 2014 May 8.

Abstract

Kv4 is a voltage-gated K(+) channel, which underlies somatodendritic subthreshold A-type current (ISA) and cardiac transient outward K(+) (Ito) current. Various ion channel properties of Kv4 are known to be modulated by its auxiliary subunits, such as K(+) channel-interacting protein (KChIP) or dipeptidyl peptidase-like protein. KChIP is a cytoplasmic protein and increases the current amplitude, decelerates the inactivation, and accelerates the recovery from inactivation of Kv4. Crystal structure analysis demonstrated that Kv4 and KChIP form an octameric complex with four Kv4 subunits and four KChIP subunits. However, it remains unknown whether the Kv4·KChIP complex can have a different stoichiometry other than 4:4. In this study, we expressed Kv4.2 and KChIP4 with various ratios in Xenopus oocytes and observed that the biophysical properties of Kv4.2 gradually changed with the increase in co-expressed KChIP4. The tandem repeat constructs of Kv4.2 and KChIP4 revealed that the 4:4 (Kv4.2/KChIP4) channel shows faster recovery than the 4:2 channel, suggesting that the biophysical properties of Kv4.2 change, depending on the number of bound KChIP4s. Subunit counting by single-molecule imaging revealed that the bound number of KChIP4 in each Kv4.2·KChIP4 complex was dependent on the expression level of KChIP4. Taken together, we conclude that the stoichiometry of Kv4·KChIP complex is variable, and the biophysical properties of Kv4 change depending on the number of bound KChIP subunits.

摘要

Kv4是一种电压门控钾离子通道,是树突体阈下A型电流(ISA)和心脏瞬时外向钾离子(Ito)电流的基础。已知Kv4的各种离子通道特性受其辅助亚基调节,如钾离子通道相互作用蛋白(KChIP)或二肽基肽酶样蛋白。KChIP是一种胞质蛋白,可增加电流幅度、减缓失活并加速Kv4从失活状态恢复。晶体结构分析表明,Kv4和KChIP形成一个八聚体复合物,包含四个Kv4亚基和四个KChIP亚基。然而,除了4:4之外,Kv4·KChIP复合物是否具有不同的化学计量比仍不清楚。在本研究中,我们在非洲爪蟾卵母细胞中以不同比例共表达Kv4.2和KChIP4,观察到随着共表达KChIP4的增加,Kv4.2的生物物理特性逐渐改变。Kv4.2和KChIP4的串联重复构建体显示,4:4(Kv4.2/KChIP4)通道比4:2通道恢复得更快,这表明Kv4.2的生物物理特性取决于结合的KChIP4数量。通过单分子成像进行亚基计数表明,每个Kv4.2·KChIP4复合物中KChIP4的结合数量取决于KChIP4的表达水平。综上所述,我们得出结论,Kv4·KChIP复合物的化学计量比是可变的,Kv4的生物物理特性取决于结合的KChIP亚基数量。

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