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麻醉剂与离子通道:分子模型及作用位点

Anesthetics and ion channels: molecular models and sites of action.

作者信息

Yamakura T, Bertaccini E, Trudell J R, Harris R A

机构信息

Waggoner Center for Alcohol and Addiction Research, University of Texas, Austin, Texas 78712, USA.

出版信息

Annu Rev Pharmacol Toxicol. 2001;41:23-51. doi: 10.1146/annurev.pharmtox.41.1.23.

Abstract

The mechanisms of general anesthesia in the central nervous system are finally yielding to molecular examination. As a result of research during the past several decades, a group of ligand-gated ion channels have emerged as plausible targets for general anesthetics. Molecular biology techniques have greatly accelerated attempts to classify ligand-gated ion channel sensitivity to general anesthetics, and have identified the sites of receptor subunits critical for anesthetic modulation using chimeric and mutated receptors. The experimental data have facilitated the construction of tenable molecular models for anesthetic binding sites, which in turn allows structural predictions to be tested. In vivo significance of a putative anesthetic target can now be examined by targeted gene manipulations in mice. In this review, we summarize from a molecular perspective recent advances in our understanding of mechanisms of action of general anesthetics on ligand-gated ion channels.

摘要

全身麻醉在中枢神经系统中的作用机制终于开始接受分子层面的研究。经过过去几十年的研究,一组配体门控离子通道已成为全身麻醉药可能的作用靶点。分子生物学技术极大地加速了对配体门控离子通道对全身麻醉药敏感性进行分类的尝试,并利用嵌合受体和突变受体确定了对麻醉药调节至关重要的受体亚基位点。实验数据有助于构建合理的麻醉药结合位点分子模型,进而能够对结构预测进行验证。现在可以通过对小鼠进行靶向基因操作来研究假定的麻醉药靶点在体内的意义。在这篇综述中,我们从分子角度总结了目前对全身麻醉药作用于配体门控离子通道机制的最新认识进展。

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