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J Biol Chem. 2004 Dec 24;279(52):54542-51. doi: 10.1074/jbc.M409721200. Epub 2004 Oct 12.
2
Two N-terminal domains of Kv4 K(+) channels regulate binding to and modulation by KChIP1.Kv4钾离子通道的两个N端结构域调节与KChIP1的结合及受其调控。
Neuron. 2004 Feb 19;41(4):587-98. doi: 10.1016/s0896-6273(04)00049-2.
3
Structural insights into the functional interaction of KChIP1 with Shal-type K(+) channels.钾通道相互作用蛋白1(KChIP1)与Shal型钾(K+)通道功能相互作用的结构见解
Neuron. 2004 Feb 19;41(4):573-86. doi: 10.1016/s0896-6273(04)00045-5.
4
Three-dimensional structure of I(to); Kv4.2-KChIP2 ion channels by electron microscopy at 21 Angstrom resolution.通过21埃分辨率的电子显微镜观察I(to);Kv4.2-KChIP2离子通道的三维结构
Neuron. 2004 Feb 19;41(4):513-9. doi: 10.1016/s0896-6273(04)00050-9.
5
N-type inactivation features of Kv4.2 channel gating.Kv4.2通道门控的N型失活特征。
Biophys J. 2004 Jan;86(1 Pt 1):210-23. doi: 10.1016/S0006-3495(04)74097-7.
6
Ito channels are octomeric complexes with four subunits of each Kv4.2 and K+ channel-interacting protein 2.Ito通道是由四个Kv4.2亚基和四个钾离子通道相互作用蛋白2亚基组成的八聚体复合物。
J Biol Chem. 2004 Feb 13;279(7):5549-54. doi: 10.1074/jbc.M311332200. Epub 2003 Nov 17.
7
Effective association of Kv channel-interacting proteins with Kv4 channel is mediated with their unique core peptide.Kv通道相互作用蛋白与Kv4通道的有效结合是由它们独特的核心肽介导的。
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8
Determining the basis of channel-tetramerization specificity by x-ray crystallography and a sequence-comparison algorithm: Family Values (FamVal).通过X射线晶体学和序列比较算法(家族值算法,FamVal)确定通道四聚化特异性的基础。
Proc Natl Acad Sci U S A. 2003 Jul 22;100(15):8670-5. doi: 10.1073/pnas.1432840100. Epub 2003 Jun 30.
9
A fundamental role for KChIPs in determining the molecular properties and trafficking of Kv4.2 potassium channels.钾通道相互作用蛋白(KChIPs)在决定Kv4.2钾通道的分子特性和运输方面的重要作用。
J Biol Chem. 2003 Sep 19;278(38):36445-54. doi: 10.1074/jbc.M306142200. Epub 2003 Jun 26.
10
The CD26-related dipeptidyl aminopeptidase-like protein DPPX is a critical component of neuronal A-type K+ channels.与CD26相关的二肽基氨基肽酶样蛋白DPPX是神经元A型钾通道的关键组成部分。
Neuron. 2003 Feb 6;37(3):449-61. doi: 10.1016/s0896-6273(02)01185-6.

N端和C端Kv4.2通道结构域对KChIP相互作用的贡献[已修正]

Contribution of N- and C-terminal Kv4.2 channel domains to KChIP interaction [corrected].

作者信息

Callsen Britta, Isbrandt Dirk, Sauter Kathrin, Hartmann L Sven, Pongs Olaf, Bähring Robert

机构信息

Institut für Neurale Signalverarbeitung, Zentrum für Molekulare Neurobiologie Hamburg, Germany.

出版信息

J Physiol. 2005 Oct 15;568(Pt 2):397-412. doi: 10.1113/jphysiol.2005.094359. Epub 2005 Aug 11.

DOI:10.1113/jphysiol.2005.094359
PMID:16096338
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1474738/
Abstract

Association of Shal gene-related voltage-gated potassium (Kv4) channels with cytoplasmic Kv channel interacting proteins (KChIPs) influences inactivation gating and surface expression. We investigated both functional and biochemical consequences of mutations in cytoplasmic N and C-terminal Kv4.2 domains to characterize structural determinants for KChIP interaction. We performed a lysine-scanning mutagenesis within the proximal 40 amino acid portion and a structure-based mutagenesis in the tetramerization 1 (T1) domain of Kv4.2. In addition, the cytoplasmic Kv4.2 C-terminus was truncated at various positions. Wild-type and mutant Kv4.2 channels were coexpressed with KChIP2 isoforms in mammalian cell lines. The KChIP2-induced modulation of Kv4.2 currents was studied with whole-cell patch clamp and the binding of KChIP2 isoforms to Kv4.2 channels with coimmunoprecipitation experiments. Our results define one major interaction site for KChIPs, including amino acids in the proximal N-terminus between residues 11 and 23, where binding and functional modulation are essentially equivalent. A further interaction site includes residues in the T1 domain. Notably, C-terminal deletions also had marked effects on KChIP2-dependent gating modulation and KChIP2 binding, revealing a previously unknown involvement of domains within the cytoplasmic Kv4.2 C-terminus in KChIP interaction. Less coincidence of binding and functional modulation indicates a more loose 'anchoring' at T1- and C-terminal interaction sites. Our results refine and extend previously proposed structural models for Kv4.2/KChIP complex formation.

摘要

与Shal基因相关的电压门控钾离子(Kv4)通道与细胞质钾离子通道相互作用蛋白(KChIPs)的结合会影响失活门控和表面表达。我们研究了细胞质N端和C端Kv4.2结构域突变的功能和生化后果,以确定KChIP相互作用的结构决定因素。我们在Kv4.2的近端40个氨基酸区域内进行了赖氨酸扫描诱变,并在四聚化结构域1(T1)中进行了基于结构的诱变。此外,在不同位置截短了细胞质Kv4.2的C端。在哺乳动物细胞系中将野生型和突变型Kv4.2通道与KChIP2亚型共表达。通过全细胞膜片钳研究KChIP2对Kv4.2电流的调节作用,并通过免疫共沉淀实验研究KChIP2亚型与Kv4.2通道的结合。我们的结果确定了KChIPs的一个主要相互作用位点,包括11至23位残基之间近端N端的氨基酸,此处结合和功能调节基本等效。另一个相互作用位点包括T1结构域中的残基。值得注意的是,C端缺失对KChIP2依赖性门控调节和KChIP2结合也有显著影响,揭示了细胞质Kv4.2 C端结构域在KChIP相互作用中以前未知的作用。结合和功能调节之间较少的一致性表明在T1和C端相互作用位点的“锚定”更松散。我们的结果完善并扩展了先前提出的Kv4.2/KChIP复合物形成的结构模型。