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局部麻醉药对钠通道状态依赖性阻滞的分子决定因素。

Molecular determinants of state-dependent block of Na+ channels by local anesthetics.

作者信息

Ragsdale D S, McPhee J C, Scheuer T, Catterall W A

机构信息

Department of Pharmacology, University of Washington, Seattle 98195.

出版信息

Science. 1994 Sep 16;265(5179):1724-8. doi: 10.1126/science.8085162.

Abstract

Sodium ion (Na+) channels, which initiate the action potential in electrically excitable cells, are the molecular targets of local anesthetic drugs. Site-directed mutations in transmembrane segment S6 of domain IV of the Na+ channel alpha subunit from rat brain selectively modified drug binding to resting or to open and inactivated channels when expressed in Xenopus oocytes. Mutation F1764A, near the middle of this segment, decreased the affinity of open and inactivated channels to 1 percent of the wild-type value, resulting in almost complete abolition of both the use-dependence and voltage-dependence of drug block, whereas mutation N1769A increased the affinity of the resting channel 15-fold. Mutation I1760A created an access pathway for drug molecules to reach the receptor site from the extracellular side. The results define the location of the local anesthetic receptor site in the pore of the Na+ channel and identify molecular determinants of the state-dependent binding of local anesthetics.

摘要

钠离子(Na+)通道可引发可兴奋细胞的动作电位,是局部麻醉药的分子靶点。当在非洲爪蟾卵母细胞中表达时,大鼠脑Na+通道α亚基结构域IV跨膜片段S6中的定点突变选择性地改变了药物与静息、开放和失活通道的结合。该片段中部附近的突变F1764A将开放和失活通道的亲和力降低至野生型值的1%,导致药物阻断的使用依赖性和电压依赖性几乎完全消失,而突变N1769A使静息通道的亲和力增加了15倍。突变I1760A为药物分子从细胞外侧到达受体位点创造了一条通路。这些结果确定了局部麻醉药受体位点在Na+通道孔中的位置,并确定了局部麻醉药状态依赖性结合的分子决定因素。

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