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GTP酶激活蛋白RGS4稳定核苷酸水解的过渡态。

The GTPase-activating protein RGS4 stabilizes the transition state for nucleotide hydrolysis.

作者信息

Berman D M, Kozasa T, Gilman A G

机构信息

Department of Pharmacology, The University of Texas Southwestern Medical Center, Dallas, Texas 75235, USA.

出版信息

J Biol Chem. 1996 Nov 1;271(44):27209-12. doi: 10.1074/jbc.271.44.27209.

Abstract

RGS proteins constitute a newly appreciated group of negative regulators of G protein signaling. Discovered by genetic screens in yeast, worms, and other organisms, two mammalian RGS proteins, RGS4 and GAIP, act as GTPase-activating proteins for members of the Gi family of G protein alpha subunits. We have purified recombinant RGS4 to homogeneity and demonstrate that it acts catalytically to stimulate GTP hydrolysis by Gi proteins. Furthermore, RGS4 stabilizes the transition state for GTP hydrolysis, as evidenced by its high affinity for the GDP-AlF4--bound forms of Goalpha and Gialpha and its relatively low affinity for the GTPgammaS- and GDP-bound forms of these proteins. Consequently, RGS4 is most likely not a downstream effector for activated Galpha subunits. All members of the Gi subfamily of proteins tested are substrates for RGS4 (including Gtalpha and Gzalpha); the protein has lower affinity for Gqalpha, and it does not stimulate the GTPase activity of Gsalpha or G12alpha.

摘要

RGS蛋白构成了一组新发现的G蛋白信号负调节因子。通过在酵母、蠕虫和其他生物体中的遗传筛选发现,两种哺乳动物RGS蛋白RGS4和GAIP,作为G蛋白α亚基Gi家族成员的GTP酶激活蛋白发挥作用。我们已将重组RGS4纯化至同质,并证明它通过催化作用刺激Gi蛋白的GTP水解。此外,RGS4稳定了GTP水解的过渡态,这可由其对结合GDP-AlF4-的Goα和Giα形式具有高亲和力以及对这些蛋白的GTPγS和GDP结合形式具有相对低亲和力得到证明。因此,RGS4很可能不是活化Gα亚基的下游效应物。所测试的Gi亚家族蛋白的所有成员都是RGS4的底物(包括Gtα和Gzα);该蛋白对Gqα的亲和力较低,并且它不刺激Gsα或G12α的GTP酶活性。

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