首页> 美国卫生研究院文献>Cell Regulation >A Highlights from MBoC Selection: RSBP-1 Is a Membrane-targeting Subunit Required by the Gαq-specific But Not the Gαo-specific R7 Regulator of G protein Signaling in Caenorhabditis elegans
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A Highlights from MBoC Selection: RSBP-1 Is a Membrane-targeting Subunit Required by the Gαq-specific But Not the Gαo-specific R7 Regulator of G protein Signaling in Caenorhabditis elegans

机译:MBoC选择的亮点:RSBP-1是秀丽隐杆线虫G蛋白信号传导的Gαq特异性而非Gαo特异性R7调节剂所需的膜靶向亚基。

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摘要

Regulator of G protein signaling (RGS) proteins inhibit G protein signaling by activating Gα GTPase activity, but the mechanisms that regulate RGS activity are not well understood. The mammalian R7 binding protein (R7BP) can interact with all members of the R7 family of RGS proteins, and palmitoylation of R7BP can target R7 RGS proteins to the plasma membrane in cultured cells. However, whether endogenous R7 RGS proteins in neurons require R7BP or membrane localization for function remains unclear. We have identified and knocked out the only apparent R7BP homolog in Caenorhabditis elegans, RSBP-1. Genetic studies show that loss of RSBP-1 phenocopies loss of the R7 RGS protein EAT-16, but does not disrupt function of the related R7 RGS protein EGL-10. Biochemical analyses find that EAT-16 coimmunoprecipitates with RSBP-1 and is predominantly plasma membrane-associated, whereas EGL-10 does not coimmunoprecipitate with RSBP-1 and is not predominantly membrane-associated. Mutating the conserved membrane-targeting sequence in RSBP-1 disrupts both the membrane association and function of EAT-16, demonstrating that membrane targeting by RSBP-1 is essential for EAT-16 activity. Our analysis of endogenous R7 RGS proteins in C. elegans neurons reveals key differences in the functional requirements for membrane targeting between members of this protein family.
机译:G蛋白信号转导(RGS)蛋白的调节剂通过激活GαGTPase活性来抑制G蛋白信号转导,但调节RGS活性的机制尚不清楚。哺乳动物的R7结合蛋白(R7BP)可以与R7家族RGS蛋白的所有成员相互作用,并且R7BP的棕榈酰化可以将R7 RGS蛋白靶向培养细胞的质膜。然而,尚不清楚神经元中的内源性R7 RGS蛋白是否需要R7BP或膜定位才能发挥作用。我们已经鉴定并敲除秀丽隐杆线虫中唯一明显的R7BP同源物RSBP-1。遗传学研究表明,R7 RGS蛋白EAT-16的RSBP-1表型丧失,但不破坏相关R7 RGS蛋白EGL-10的功能。生化分析发现EAT-16与RSBP-1共免疫沉淀,并且主要与血浆膜相关,而EGL-10与RSBP-1不共免疫沉淀,并且与膜主要无关。突变RSBP-1中保守的膜靶向序列会破坏膜结合和EAT-16的功能,这表明RSBP-1的膜靶向对EAT-16活性至关重要。我们对秀丽隐杆线虫神经元中内源性R7 RGS蛋白的分析揭示了该蛋白家族成员之间针对膜靶向的功能要求的关键差异。

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