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KChIP4a 对 Kv4.3 通道四聚体突变体的功能拯救。

Functional rescue of Kv4.3 channel tetramerization mutants by KChIP4a.

机构信息

Department of Neurobiology, Neuroscience Research Institute, Peking University Health Science Center, Beijing, China.

出版信息

Biophys J. 2010 Jun 16;98(12):2867-76. doi: 10.1016/j.bpj.2010.03.044.

Abstract

KChIP4a shows a high homology with other members of the family of Kv channel-interacting proteins (KChIPs) in the conserved C-terminal core region, but exhibits a unique modulation of Kv4 channel gating and surface expression. Unlike KChIP1, the KChIP4 splice variant KChIP4a has been shown to inhibit surface expression and function as a suppressor of channel inactivation of Kv4. In this study, we sought to determine whether the multitasking KChIP4a modulates Kv4 function in a clamping fashion similar to that shown by KChIP1. Injection of Kv4.3 T1 zinc mutants into Xenopus oocytes resulted in the nonfunctional expression of Kv4.3 channels. Coexpression of Kv4.3 zinc mutants with WT KChIP4a gave rise to the functional expression of Kv4.3 current. Oocyte surface labeling results confirm the correlation between functional rescue and enhanced surface expression of zinc mutant proteins. Chimeric mutations that replace the Kv4.3 N-terminus with N-terminal KChIP4a or N-terminal deletion of KChIP4a further demonstrate that the functional rescue of Kv4.3 channel tetramerization mutants depends on the KChIP4a core region, but not its N-terminus. Structure-guided mutation of two critical residues of core KChIP4a attenuated functional rescue and tetrameric assembly. Moreover, size exclusion chromatography combined with fast protein liquid chromatography showed that KChIP4a can drive zinc mutant monomers to assemble as tetramers. Taken together, our results show that KChIP4a can rescue the function of tetramerization-defective Kv4 monomers. Therefore, we propose that core KChIP4a functions to promote tetrameric assembly and enhance surface expression of Kv4 channels by a clamping action, whereas its N-terminus inhibits surface expression of Kv4 by a mechanism that remains elusive.

摘要

KChIP4a 在保守的 C 端核心区域与其他 Kv 通道相互作用蛋白(KChIPs)家族成员表现出高度同源性,但对 Kv4 通道门控和表面表达表现出独特的调节作用。与 KChIP1 不同,KChIP4 的剪接变体 KChIP4a 已被证明抑制表面表达,并作为 Kv4 通道失活的抑制剂。在这项研究中,我们试图确定多功能 KChIP4a 是否以类似于 KChIP1 所示的方式调节 Kv4 功能。将 Kv4.3 T1 锌突变体注射到非洲爪蟾卵母细胞中导致 Kv4.3 通道的无功能表达。与 WT KChIP4a 共表达 Kv4.3 锌突变体可导致 Kv4.3 电流的功能性表达。卵母细胞表面标记结果证实了功能挽救与锌突变蛋白增强表面表达之间的相关性。用 KChIP4a 的 N 端取代 Kv4.3 的 N 端或 KChIP4a 的 N 端缺失的嵌合突变进一步表明,Kv4.3 通道四聚体突变体的功能挽救依赖于 KChIP4a 的核心区域,而不是其 N 端。核心 KChIP4a 的两个关键残基的结构导向突变减弱了功能挽救和四聚体组装。此外,排阻色谱结合快速蛋白质液相色谱显示,KChIP4a 可以驱动锌突变体单体组装为四聚体。总之,我们的结果表明,KChIP4a 可以挽救四聚体缺陷的 Kv4 单体的功能。因此,我们提出核心 KChIP4a 通过夹合作用促进四聚体组装并增强 Kv4 通道的表面表达,而其 N 端通过一种仍不清楚的机制抑制 Kv4 通道的表面表达。

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