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前列腺素E受体EP3D根据激动剂羧酸与第七跨膜结构域精氨酸残基的相互作用而与多种G蛋白发生选择性偶联。

Selective coupling of prostaglandin E receptor EP3D to multiple G proteins depending on interaction of the carboxylic acid of agonist and arginine residue of seventh transmembrane domain.

作者信息

Negishi M, Harazono A, Sugimoto Y, Hazato A, Kurozumi S, Ichikawa A

机构信息

Department of Physiological Chemistry, Faculty of Pharmaceutical Sciences, Kyoto University, Japan.

出版信息

Biochem Biophys Res Commun. 1995 Jul 17;212(2):279-85. doi: 10.1006/bbrc.1995.1967.

Abstract

Prostaglandin E receptor EP3D is coupled to stimulation and inhibition of adenylate cyclase and stimulation of phosphatidylinositol turnover. To examine the roles of the interaction of the carboxylic acid of an agonist and its putative binding site, the arginine residue in the seventh transmembrane domain of EP3D, in receptor-G protein coupling, we have mutated the arginine to the non-charged glutamine. TEI-3356, an EP3 agonist with a negatively charged the carboxylic acid, and TEI-4343, a non-charged methylester of TEI-3356, inhibited the forskolin-stimulated cAMP formation in the same concentration-dependent manner, but stimulation of basal cAMP formation and Ca2+ mobilization by TEI-4343 was much lower than that by TEI-3356. In the mutant receptor, both TEI-3356 and TEI-4343 showed the inhibition of forskolin-stimulated cAMP formation in the same profile, but did not stimulate basal cAMP formation or Ca2+ mobilization. These findings suggest that the interaction between the carboxylic acid of agonist and the arginine residue is important in signal transduction for adenylate cyclase stimulation and Ca2+ mobilization but not for adenylate cyclase inhibition.

摘要

前列腺素E受体EP3D与腺苷酸环化酶的激活和抑制以及磷脂酰肌醇代谢的激活相关联。为了研究激动剂的羧酸与其假定结合位点(EP3D第七跨膜结构域中的精氨酸残基)之间的相互作用在受体 - G蛋白偶联中的作用,我们将精氨酸突变为不带电荷的谷氨酰胺。TEI - 3356是一种羧酸带负电荷的EP3激动剂,TEI - 4343是TEI - 3356的不带电荷的甲酯,它们以相同的浓度依赖性方式抑制福斯高林刺激的cAMP形成,但TEI - 4343对基础cAMP形成和Ca2 +动员的刺激作用远低于TEI - 3356。在突变受体中,TEI - 3356和TEI - 4343均以相同的模式抑制福斯高林刺激的cAMP形成,但不刺激基础cAMP形成或Ca2 +动员。这些发现表明,激动剂的羧酸与精氨酸残基之间的相互作用在腺苷酸环化酶刺激和Ca2 +动员的信号转导中很重要,但在腺苷酸环化酶抑制中不重要。

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