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RGS17/RGSZ2与G蛋白信号调节因子的RZ/A家族

RGS17/RGSZ2 and the RZ/A family of regulators of G-protein signaling.

作者信息

Nunn Caroline, Mao Helen, Chidiac Peter, Albert Paul R

机构信息

Department of Physiology and Pharmacology, University of Western Ontario, London, Ont., Canada, N6A 5C1.

出版信息

Semin Cell Dev Biol. 2006 Jun;17(3):390-9. doi: 10.1016/j.semcdb.2006.04.001. Epub 2006 Apr 7.

DOI:10.1016/j.semcdb.2006.04.001
PMID:16765607
Abstract

Regulators of G-protein signaling (RGS proteins) comprise over 20 different proteins that have been classified into subfamilies on the basis of structural homology. The RZ/A family includes RGSZ2/RGS17 (the most recently discovered member of this family), GAIP/RGS19, RGSZ1/RGS20, and the RGSZ1 variant Ret-RGS. The RGS proteins are GTPase activating proteins (GAPs) that turn off G-proteins and thus negatively regulate the signaling of G-protein coupled receptors (GPCRs). In addition, some RZ/A family RGS proteins are able to modify signaling through interactions with adapter proteins (such as GIPC and GIPN). The RZ/A proteins have a simple structure that includes a conserved amino-terminal cysteine string motif, RGS box and short carboxyl-terminal, which confer GAP activity (RGS box) and the ability to undergo covalent modification and interact with other proteins (amino-terminal). This review focuses on RGS17 and its RZ/A sibling proteins and discusses the similarities and differences among these proteins in terms of their palmitoylation, phosphorylation, intracellular localization and interactions with GPCRs and adapter proteins. The specificity of these RGS protein for different Galpha proteins and receptors, and the consequences for signaling are discussed. The tissue and brain distribution, and the evolving understanding of the roles of this family of RGS proteins in receptor signaling and brain function are highlighted.

摘要

G蛋白信号调节因子(RGS蛋白)由20多种不同的蛋白质组成,这些蛋白质已根据结构同源性分为亚家族。RZ/A家族包括RGSZ2/RGS17(该家族最近发现的成员)、GAIP/RGS19、RGSZ1/RGS20以及RGSZ1变体Ret-RGS。RGS蛋白是GTP酶激活蛋白(GAPs),可关闭G蛋白,从而对G蛋白偶联受体(GPCRs)的信号传导进行负调节。此外,一些RZ/A家族的RGS蛋白能够通过与衔接蛋白(如GIPC和GIPN)相互作用来改变信号传导。RZ/A蛋白具有简单的结构,包括一个保守的氨基末端半胱氨酸串基序、RGS结构域和短羧基末端,它们赋予GAP活性(RGS结构域)以及进行共价修饰和与其他蛋白质相互作用的能力(氨基末端)。本综述重点关注RGS17及其RZ/A家族的同源蛋白,并讨论这些蛋白在棕榈酰化、磷酸化、细胞内定位以及与GPCRs和衔接蛋白相互作用方面的异同。还讨论了这些RGS蛋白对不同Gα蛋白和受体的特异性以及信号传导的后果。强调了该RGS蛋白家族在组织和大脑中的分布,以及对其在受体信号传导和大脑功能中作用的不断深入理解。

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