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棕榈酸酯和βγ亚基对Gsα的相互调节。

Reciprocal regulation of Gs alpha by palmitate and the beta gamma subunit.

作者信息

Iiri T, Backlund P S, Jones T L, Wedegaertner P B, Bourne H R

机构信息

Department of Cellular and Molecular Pharmacology, University of California, San Francisco 94143, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Dec 10;93(25):14592-7. doi: 10.1073/pnas.93.25.14592.

Abstract

Hormonal activation of Gs, the stimulatory regulator of adenylyl cyclase, promotes dissociation of alpha s from G beta gamma, accelerates removal of covalently attached palmitate from the G alpha subunit, and triggers release of a fraction of alpha s from the plasma membrane into the cytosol. To elucidate relations among these three events, we assessed biochemical effects in vitro of attached palmitate on recombinant alpha s prepared from Sf9 cells. In comparison to the unpalmitoylated protein (obtained from cytosol of Sf9 cells, treated with a palmitoyl esterase, or expressed as a mutant protein lacking the site for palmitoylation), palmitoylated alpha s (from Sf9 membranes, 50% palmitoylated) was more hydrophobic, as indicated by partitioning into TX-114, and bound beta gamma with 5-fold higher affinity. beta gamma protected GDP-bound alpha s, but not alpha s-GTP[gamma S], from depalmitoylation by a recombinant esterase. We conclude that beta gamma binding and palmitoylation reciprocally potentiate each other in promoting membrane attachment of alpha s and that dissociation of alpha s.GTP from beta gamma is likely to mediate receptor-induced alpha s depalmitoylation and translocation of the protein to cytosol in intact cells.

摘要

Gs作为腺苷酸环化酶的刺激性调节因子,其激素激活作用可促进αs从Gβγ解离,加速从Gα亚基上去除共价连接的棕榈酸,并触发一部分αs从质膜释放到胞质溶胶中。为了阐明这三个事件之间的关系,我们评估了体外连接的棕榈酸对从Sf9细胞制备的重组αs的生化影响。与未棕榈酰化的蛋白质(从Sf9细胞的胞质溶胶中获得,用棕榈酰酯酶处理,或表达为缺乏棕榈酰化位点的突变蛋白)相比,棕榈酰化的αs(来自Sf9膜,50%棕榈酰化)更疏水,这通过分配到TX-114中表明,并且与βγ的结合亲和力高5倍。βγ保护结合GDP的αs,但不保护αs-GTP[γS]免受重组酯酶的去棕榈酰化作用。我们得出结论,在促进αs的膜附着方面,βγ结合和棕榈酰化相互增强,并且αs.GTP从βγ的解离可能介导完整细胞中受体诱导的αs去棕榈酰化和蛋白质向胞质溶胶的转运。

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