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Galphai2、Galphai3和Gbetaγ在多巴胺D2S受体调节福斯高林或Gs介导的环磷酸腺苷(cAMP)积累及钙动员中的不同作用。

Distinct roles for Galphai2, Galphai3, and Gbeta gamma in modulation offorskolin- or Gs-mediated cAMP accumulation and calcium mobilization by dopamine D2S receptors.

作者信息

Ghahremani M H, Cheng P, Lembo P M, Albert P R

机构信息

Department of Pharmacology and Therapeutics, McGill University, Montreal H3G 1Y6, Canada.

出版信息

J Biol Chem. 1999 Apr 2;274(14):9238-45. doi: 10.1074/jbc.274.14.9238.

Abstract

Previous studies have shown that a single G protein-coupled receptor can regulate different effector systems by signaling through multiple subtypes of heterotrimeric G proteins. In LD2S fibroblast cells, the dopamine D2S receptor couples to pertussis toxin (PTX)-sensitive Gi/Go proteins to inhibit forskolin- or prostaglandin E1-stimulated cAMP production and to stimulate calcium mobilization. To analyze the role of distinct Galphai/o protein subtypes, LD2S cells were stably transfected with a series of PTX-insensitive Galphai/o protein Cys --> Ser point mutants and assayed for D2S receptor signaling after PTX treatment. The level of expression of the transfected Galpha mutant subunits was similar to the endogenous level of the most abundant Galphai/o proteins (Galphao, Galphai3). D2S receptor-mediated inhibition of forskolin-stimulated cAMP production was retained only in clones expressing mutant Galphai2. In contrast, the D2S receptor utilized Galphai3 to inhibit PGE1-induced (Gs-coupled) enhancement of cAMP production. Following stable or transient transfection, no single or pair set of mutant Galphai/o subtypes rescued the D2S-mediated calcium response following PTX pretreatment. On the other hand, in LD2S cells stably transfected with GRK-CT, a receptor kinase fragment that specifically antagonizes Gbeta gamma subunit activity, D2S receptor-mediated calcium mobilization was blocked. The observed specificity of Galphai2 and Galphai3 for different states of adenylyl cyclase activation suggests a higher level of specificity for interaction of Galphai subunits with forskolin- versus Gs-activated states of adenylyl cyclase than has been previously appreciated.

摘要

先前的研究表明,单个G蛋白偶联受体可通过异源三聚体G蛋白的多种亚型进行信号传导,从而调节不同的效应系统。在LD2S成纤维细胞中,多巴胺D2S受体与百日咳毒素(PTX)敏感的Gi/Go蛋白偶联,以抑制福斯高林或前列腺素E1刺激的cAMP产生,并刺激钙动员。为了分析不同Gαi/o蛋白亚型的作用,用一系列PTX不敏感的Gαi/o蛋白Cys→Ser点突变体稳定转染LD2S细胞,并在PTX处理后检测D2S受体信号传导。转染的Gα突变亚基的表达水平与最丰富的Gαi/o蛋白(Gαo、Gαi3)的内源性水平相似。D2S受体介导的对福斯高林刺激的cAMP产生的抑制仅保留在表达突变体Gαi2的克隆中。相反,D2S受体利用Gαi3抑制PGE1诱导的(Gs偶联)cAMP产生增强。在稳定或瞬时转染后,没有单一或一对突变的Gαi/o亚型能够挽救PTX预处理后D2S介导的钙反应。另一方面,在稳定转染GRK-CT(一种特异性拮抗Gβγ亚基活性的受体激酶片段)的LD2S细胞中,D2S受体介导的钙动员被阻断。观察到的Gαi2和Gαi3对腺苷酸环化酶不同激活状态的特异性表明,与先前认识到的相比,Gαi亚基与福斯高林激活状态和Gs激活状态的腺苷酸环化酶相互作用的特异性水平更高。

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