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双孔结构域钾通道:局部麻醉药作用及毒性的新靶点

Two-pore domain potassium channels: new sites of local anesthetic action and toxicity.

作者信息

Kindler Christoph H, Yost C Spencer

机构信息

Department of Anesthesia, University Hospital, Basel, Switzerland.

出版信息

Reg Anesth Pain Med. 2005 May-Jun;30(3):260-74. doi: 10.1016/j.rapm.2004.12.001.

Abstract

Potassium (K+) channels form the largest family of ion channels with more than 70 such genes identified in the human genome. They are organized in 3 superfamilies according to their predicted membrane topology: (1) subunits with 6 membrane-spanning segments and 1-pore domain, (2) subunits with 2 membrane-spanning segments and 1-pore domain, and (3) subunits with 4 membrane-spanning segments and 2-pore domains arrayed in a tandem position. The last family has most recently been identified and comprises the so-called 2-pore domain potassium (K2P) channels, believed responsible for background or leak K+ currents. Despite their recent discovery, interest in them is growing rapidly with more than 270 references in the literature reported (www.ipmc.cnrs.fr/~duprat/2p/ref2p.htm#2P, accessed October 30, 2004). K2P channels are widely expressed in the central nervous system and are involved in the control of the resting membrane potential and the firing pattern of excitable cells. This article will therefore review recent findings on actions of local anesthetics with respect to 2P channels. It begins with an overview of the role of background K+ channels in neuronal excitability and nerve conduction and is followed by a description of the K2P channel family including experimental evidence for the contribution of K2P channels to the mechanism of action and toxicity of local anesthetics.

摘要

钾(K+)通道构成了最大的离子通道家族,在人类基因组中已鉴定出70多个此类基因。根据其预测的膜拓扑结构,它们被分为3个超家族:(1)具有6个跨膜片段和1个孔结构域的亚基;(2)具有2个跨膜片段和1个孔结构域的亚基;(3)具有4个跨膜片段和2个串联排列的孔结构域的亚基。最后一个家族是最近才被鉴定出来的,包括所谓的双孔结构域钾(K2P)通道,被认为与背景或泄漏K+电流有关。尽管它们是最近才被发现的,但对它们的兴趣正在迅速增长,文献中报道的相关参考文献已超过270篇(www.ipmc.cnrs.fr/~duprat/2p/ref2p.htm#2P,访问时间为2004年10月30日)。K2P通道在中枢神经系统中广泛表达,并参与静息膜电位的控制和可兴奋细胞的放电模式。因此,本文将综述局部麻醉药对2P通道作用的最新研究结果。文章首先概述了背景K+通道在神经元兴奋性和神经传导中的作用,接着描述了K2P通道家族,包括K2P通道对局部麻醉药作用机制和毒性贡献的实验证据。

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