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受体介导的Gsα激活:分子内信号转导的证据

Receptor-mediated activation of Gsalpha: evidence for intramolecular signal transduction.

作者信息

Marsh S R, Grishina G, Wilson P T, Berlot C H

机构信息

Department of Pharmacology, Yale University School of Medicine, New Haven, Connecticut 06520-8026, USA.

出版信息

Mol Pharmacol. 1998 Jun;53(6):981-90.

PMID:9614199
Abstract

To investigate the mechanism by which cell surface receptors activate heterotrimeric G proteins, we applied a scanning mutagenesis approach to the carboxyl-terminal 40% of alphas (residues 236-394) to identify residues that play a role in receptor-mediated activation. We identified four regions of sequence in which mutations significantly impaired receptor-dependent stimulation of cAMP synthesis in transiently transfected cyc- S49 lymphoma cells, which lack endogenous alphas. Residues at the carboxyl terminus are likely to be receptor contact sites. Buried residues near the bound GDP are connected to the carboxyl terminus by an alpha helix and may regulate GDP affinity. Residues in two adjacent loops of the GTPase domain at the interface with the helical domain, one of which includes a region, switch III, that changes conformation on GTP binding, are positioned to relay the receptor-initiated signal across the domain interface to facilitate GDP release. Consistent with this hypothesis, replacing the helical domain of alphas with that of alphai2 in an alphas/alphai2/alphas chimera corrects the defect in receptor-mediated activation caused by alphai2 substitutions on the GTPase side of the interface. Thus, complementary interactions between residues across the domain interface seem to play a role in receptor-catalyzed activation.

摘要

为了研究细胞表面受体激活异源三聚体G蛋白的机制,我们对α亚基羧基末端40%(第236 - 394位氨基酸残基)采用扫描诱变方法,以确定在受体介导的激活过程中起作用的氨基酸残基。我们在缺乏内源性α亚基的瞬时转染的cyc - S49淋巴瘤细胞中,确定了四个序列区域,其中的突变显著损害了受体依赖性的cAMP合成刺激。羧基末端的氨基酸残基可能是受体接触位点。结合的GDP附近的埋藏残基通过一个α螺旋与羧基末端相连,可能调节GDP亲和力。在与螺旋结构域界面处的GTPase结构域的两个相邻环中的残基,其中一个环包括在结合GTP时会改变构象的区域开关III,它们的位置能够将受体启动的信号传递过结构域界面,以促进GDP释放。与这一假设一致,在αs/αi2/αs嵌合体中用αi2的螺旋结构域替换αs的螺旋结构域,可纠正由界面GTPase侧的αi2替代导致的受体介导激活缺陷。因此,跨结构域界面的残基之间的互补相互作用似乎在受体催化的激活中起作用。

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