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G蛋白信号调节蛋白的内源性调节剂抑制Gαo依赖性、μ-阿片样激动剂介导的腺苷酸环化酶超敏反应。

Endogenous regulator of G protein signaling proteins suppress Galphao-dependent, mu-opioid agonist-mediated adenylyl cyclase supersensitization.

作者信息

Clark Mary J, Neubig Richard R, Traynor John R

机构信息

Department of Pharmacology, University of Michigan Medical Center, Ann Arbor, Michigan 48109-0632, USA.

出版信息

J Pharmacol Exp Ther. 2004 Jul;310(1):215-22. doi: 10.1124/jpet.103.064824. Epub 2004 Mar 10.

Abstract

Chronic mu-opioid agonist treatment leads to dependence with withdrawal on removal of agonist. At the cellular level withdrawal is accompanied by a supersensitization of adenylyl cyclase, an effect that requires inhibitory Galpha proteins. Inhibitory Galpha protein action is modulated by regulator of G protein signaling (RGS) proteins that act as GTPase activating proteins and reduce the lifetime of Galpha-GTP. In this article, we use C6 glioma cells expressing the rat mu-opioid receptor (C6mu) to examine the hypothesis that Galphao alone can mediate mu-opioid agonist induced adenylyl cyclase supersensitivity and that endogenous RGS proteins serve to limit the extent of this supersensitization. C6mu cells were stably transfected with pertussis toxin (PTX)-insensitive Galphao that was either sensitive or insensitive to endogenous RGS proteins. Cells were treated with PTX to uncouple endogenous Galpha proteins followed by exposure to the mu-opioid agonists [D-Ala2,N-Me-Phe4,Gly5-ol]-enkephalin or morphine. Supersensitization was observed in cells expressing wild-type Galpha, but this was lost on PTX treatment. In cells expressing PTX-insensitive Galphao supersensitization was recovered, confirming that Galphao alone can support supersensitization. In cells expressing the RGS-insensitive mutant Galphao, there was a greater degree of supersensitization and the concentration of micro-agonist needed to achieve half-maximal supersensitization was reduced by 10-fold. The amount of supersensitization seen did not directly relate to the degree of acute inhibition of adenylyl cyclase. These results demonstrate a role for Galphao in adenylyl cyclase supersensitization after mu-agonist exposure and show that this action is modulated by endogenous RGS proteins.

摘要

慢性μ-阿片类激动剂治疗会导致成瘾,停用激动剂后会出现戒断症状。在细胞水平上,戒断伴随着腺苷酸环化酶的超敏化,这种效应需要抑制性Gα蛋白。抑制性Gα蛋白的作用受G蛋白信号调节剂(RGS)蛋白调节,RGS蛋白作为GTP酶激活蛋白,可缩短Gα-GTP的寿命。在本文中,我们使用表达大鼠μ-阿片受体(C6mu)的C6胶质瘤细胞来检验以下假设:单独的Gαo可以介导μ-阿片类激动剂诱导的腺苷酸环化酶超敏化,内源性RGS蛋白可限制这种超敏化的程度。用对百日咳毒素(PTX)不敏感且对内源性RGS蛋白敏感或不敏感的Gαo稳定转染C6mu细胞。用PTX处理细胞以解偶联内源性Gα蛋白,然后暴露于μ-阿片类激动剂[D-Ala2,N-Me-Phe4,Gly5-ol]-脑啡肽或吗啡。在表达野生型Gα的细胞中观察到超敏化,但PTX处理后这种超敏化消失。在表达对PTX不敏感的Gαo的细胞中,超敏化得以恢复,证实单独的Gαo可以支持超敏化。在表达对RGS不敏感的突变型Gαo的细胞中,超敏化程度更高,达到半最大超敏化所需的微激动剂浓度降低了10倍。观察到的超敏化程度与腺苷酸环化酶的急性抑制程度没有直接关系。这些结果证明了Gαo在μ-激动剂暴露后腺苷酸环化酶超敏化中的作用,并表明这种作用受内源性RGS蛋白调节。

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