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交替剪接的 KChIP2 异构体中的多碱性基序可防止 Kv4 通道的 Ca 调节。

A polybasic motif in alternatively spliced KChIP2 isoforms prevents Ca regulation of Kv4 channels.

机构信息

From the NIGMS and

Section on Molecular Neurophysiology, NICHD, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Biol Chem. 2019 Mar 8;294(10):3683-3695. doi: 10.1074/jbc.RA118.006549. Epub 2019 Jan 8.

Abstract

The Kv4 family of A-type voltage-gated K channels regulates the excitability in hippocampal pyramidal neuron dendrites and are key determinants of dendritic integration, spike timing-dependent plasticity, long-term potentiation, and learning. Kv4.2 channel expression is down-regulated following hippocampal seizures and in epilepsy, suggesting A-type currents as therapeutic targets. In addition to pore-forming Kv4 subunits, modulatory auxiliary subunits called K channel-interacting proteins (KChIPs) modulate Kv4 expression and activity and are required to recapitulate native hippocampal A-type currents in heterologous expression systems. mRNAs contain multiple start sites and alternative exons that generate considerable N-terminal variation and functional diversity in shaping Kv4 currents. As members of the EF-hand domain-containing neuronal Ca sensor protein family, KChIP auxiliary proteins may convey Ca sensitivity upon Kv4 channels; however, to what degree intracellular Ca regulates KChIP-Kv4.2 complexes is unclear. To answer this question, we expressed KChIP2 with Kv4.2 in HEK293T cells, and, with whole-cell patch-clamp electrophysiology, measured an ∼1.5-fold increase in Kv4.2 current density in the presence of elevated intracellular Ca Intriguingly, the Ca regulation of Kv4 current was specific to KChIP2b and KChIP2c splice isoforms that lack a putative polybasic domain that is present in longer KChIP2a1 and KChIP2a isoforms. Site-directed acidification of the basic residues within the polybasic motif of KChIP2a1 rescued Ca-mediated regulation of Kv4 current density. These results support divergent Ca regulation of Kv4 channels mediated by alternative splicing of KChIP2 isoforms. They suggest that distinct KChIP-Kv4 interactions may differentially control excitability and function of hippocampal dendrites.

摘要

Kv4 家族的 A 型电压门控钾通道调节海马锥体神经元树突的兴奋性,是树突整合、依赖于尖峰时间的可塑性、长时程增强和学习的关键决定因素。海马癫痫发作后和癫痫中 Kv4.2 通道表达下调,表明 A 型电流是治疗靶点。除了形成孔的 Kv4 亚基外,称为钾通道相互作用蛋白 (KChIP) 的调节辅助亚基调节 Kv4 的表达和活性,并且是在异源表达系统中重现天然海马 A 型电流所必需的。mRNA 包含多个起始位点和替代外显子,这些外显子在塑造 Kv4 电流方面产生了相当大的 N 端变异和功能多样性。作为 EF 手结构域包含的神经元钙传感器蛋白家族的成员,KChIP 辅助蛋白可能在 Kv4 通道上传递钙敏感性;然而,细胞内钙调节 KChIP-Kv4.2 复合物的程度尚不清楚。为了回答这个问题,我们在 HEK293T 细胞中表达了与 Kv4.2 一起的 KChIP2,并通过全细胞膜片钳电生理学测量,在升高的细胞内 Ca 存在下,Kv4.2 电流密度增加了约 1.5 倍。有趣的是,Kv4 电流的 Ca 调节特异性针对 KChIP2b 和 KChIP2c 剪接异构体,这些异构体缺乏存在于较长的 KChIP2a1 和 KChIP2a 异构体中的假定多碱性结构域。KChIP2a1 中多碱性结构域内碱性残基的定点酸化挽救了 Ca 介导的 Kv4 电流密度的调节。这些结果支持 KChIP2 异构体的替代剪接介导的 Kv4 通道的不同 Ca 调节。它们表明,不同的 KChIP-Kv4 相互作用可能以不同的方式控制海马树突的兴奋性和功能。

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