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The C-terminus of Kv7 channels: a multifunctional module.

作者信息

Haitin Yoni, Attali Bernard

机构信息

Department of Physiology and Pharmacology, Sackler Medical School, Tel Aviv University, Tel Aviv 69978, Israel.

出版信息

J Physiol. 2008 Apr 1;586(7):1803-10. doi: 10.1113/jphysiol.2007.149187. Epub 2008 Jan 24.


DOI:10.1113/jphysiol.2007.149187
PMID:18218681
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2375714/
Abstract

Kv7 channels (KCNQ) represent a family of voltage-gated K(+) channels which plays a prominent role in brain and cardiac excitability. Their physiological importance is underscored by the existence of mutations in human Kv7 genes, leading to severe cardiovascular and neurological disorders such as the cardiac long QT syndrome and neonatal epilepsy. Kv7 channels exhibit some structural and functional features that are distinct from other Kv channels. Notably, the Kv7 C-terminus is long compared to other K(+) channels and is endowed with characteristic structural domains, including coiled-coils, amphipatic alpha helices containing calmodulin-binding motifs and basic amino acid clusters. Here we provide a brief overview of current insights and as yet unsettled issues about the structural and functional attributes of the C-terminus of Kv7 channels. Recent data indicate that the proximal half of the Kv7 C-terminus associates with one calmodulin constitutively bound to each subunit. Epilepsy and long QT mutations located in this proximal region impair calmodulin binding and can affect channel gating, folding and trafficking. The distal half of the Kv7 C-terminus directs tetramerization, employing tandem coiled-coils. Together, the data indicate that the Kv7 C-terminal domain is a multimodular structure playing a crucial role in channel gating, assembly and trafficking as well as in scaffolding the channel complex with signalling proteins.

摘要

相似文献

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[3]
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[4]
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[5]
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[6]
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[7]
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[8]
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[9]
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[9]
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[10]
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本文引用的文献

[1]
The KCNQ1 (Kv7.1) COOH terminus, a multitiered scaffold for subunit assembly and protein interaction.

J Biol Chem. 2008-2-29

[2]
Calmodulin regulates the trafficking of KCNQ2 potassium channels.

FASEB J. 2008-4

[3]
Regulation of ion transport proteins by membrane phosphoinositides.

Nat Rev Neurosci. 2007-12

[4]
Activation of epidermal growth factor receptor inhibits KCNQ2/3 current through two distinct pathways: membrane PtdIns(4,5)P2 hydrolysis and channel phosphorylation.

J Neurosci. 2007-3-7

[5]
Structural insight into KCNQ (Kv7) channel assembly and channelopathy.

Neuron. 2007-3-1

[6]
Regulation of the voltage-gated K(+) channels KCNQ2/3 and KCNQ3/5 by ubiquitination. Novel role for Nedd4-2.

J Biol Chem. 2007-4-20

[7]
Integration of phosphoinositide- and calmodulin-mediated regulation of TRPC6.

Mol Cell. 2007-2-23

[8]
Requirement of subunit co-assembly and ankyrin-G for M-channel localization at the axon initial segment.

J Cell Sci. 2007-3-15

[9]
The KCNQ1 potassium channel is down-regulated by ubiquitylating enzymes of the Nedd4/Nedd4-like family.

Cardiovasc Res. 2007-4-1

[10]
Probing the regulation of M (Kv7) potassium channels in intact neurons with membrane-targeted peptides.

J Neurosci. 2006-7-26

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