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甘氨酸受体细胞外结构域第2环中乙醇作用和拮抗作用的靶点。

Targets for ethanol action and antagonism in loop 2 of the extracellular domain of glycine receptors.

作者信息

Perkins Daya I, Trudell James R, Crawford Daniel K, Alkana Ronald L, Davies Daryl L

机构信息

Alcohol and Brain Research Laboratory, Department of Pharmacology and Pharmaceutical Sciences, School of Pharmacy, University of Southern California, Los Angeles, California, USA.

出版信息

J Neurochem. 2008 Aug;106(3):1337-49. doi: 10.1111/j.1471-4159.2008.05476.x. Epub 2008 May 12.

Abstract

The present studies used increased atmospheric pressure in place of a traditional pharmacological antagonist to probe the molecular sites and mechanisms of ethanol action in glycine receptors (GlyRs). Based on previous studies, we tested the hypothesis that physical-chemical properties at position 52 in extracellular domain Loop 2 of alpha1GlyRs, or the homologous alpha2GlyR position 59, determine sensitivity to ethanol and pressure antagonism of ethanol. Pressure antagonized ethanol in alpha1GlyRs that contain a non-polar residue at position 52, but did not antagonize ethanol in receptors with a polar residue at this position. Ethanol sensitivity in receptors with polar substitutions at position 52 was significantly lower than GlyRs with non-polar residues at this position. The alpha2T59A mutation switched sensitivity to ethanol and pressure antagonism in the WTalpha2GlyR, thereby making it alpha1-like. Collectively, these findings indicate that (i) polarity at position 52 plays a key role in determining sensitivity to ethanol and pressure antagonism of ethanol; (ii) the extracellular domain in alpha1- and alpha2GlyRs is a target for ethanol action and antagonism and (iii) there is structural-functional homology across subunits in Loop 2 of GlyRs with respect to their roles in determining sensitivity to ethanol and pressure antagonism of ethanol. These findings should help in the development of pharmacological agents that antagonize ethanol.

摘要

本研究使用增加的大气压力代替传统的药理学拮抗剂,以探究乙醇在甘氨酸受体(GlyRs)中的作用分子位点和机制。基于先前的研究,我们检验了以下假设:α1甘氨酸受体胞外结构域环2中第52位的物理化学性质,或同源α2甘氨酸受体第59位的性质,决定了对乙醇的敏感性以及乙醇的压力拮抗作用。压力可拮抗第52位含有非极性残基的α1甘氨酸受体中的乙醇作用,但不能拮抗该位置含有极性残基的受体中的乙醇作用。第52位具有极性取代的受体对乙醇的敏感性显著低于该位置具有非极性残基的甘氨酸受体。α2T59A突变改变了野生型α2甘氨酸受体对乙醇和压力拮抗作用的敏感性,使其具有类似α1的特性。总的来说,这些发现表明:(i)第52位的极性在决定对乙醇的敏感性和乙醇的压力拮抗作用中起关键作用;(ii)α1和α2甘氨酸受体的胞外结构域是乙醇作用和拮抗的靶点;(iii)甘氨酸受体环2中各亚基在决定对乙醇的敏感性和乙醇的压力拮抗作用方面存在结构-功能同源性。这些发现应有助于开发拮抗乙醇的药物制剂。

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