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首页> 外文期刊>The Journal of biological chemistry >Regulated Localization Is Sufficient for Hormonal Control of Regulator of G Protein Signaling Homology Rho Guanine Nucleotide Exchange Factors (RH-RhoGEFs)
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Regulated Localization Is Sufficient for Hormonal Control of Regulator of G Protein Signaling Homology Rho Guanine Nucleotide Exchange Factors (RH-RhoGEFs)

机译:调节定位足以用于G蛋白信号同源性Rho鸟嘌呤核苷酸核苷酸交换因子的调节剂的激素控制(RH-Rhogefs)

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摘要

The regulator of G protein signaling homology (RH) Rho guanine nucleotide exchange factors (RhoGEFs) (p115RhoGEF, leukemia-associated RhoGEF, and PDZ-RhoGEF) contain an RH domain and are specific GEFs for the monomeric GTPase RhoA. The RH domains interact specifically with the α subunits of G12 heterotrimeric GTPases. Activated Gα13 modestly stimulates the exchange activity of both p115RhoGEF and leukemia-associated RhoGEF but not PDZ-RhoGEF. Because all three RH-RhoGEFs can localize to the plasma membrane upon expression of activated Gα13, cellular localization of these RhoGEFs has been proposed as a mechanism for controlling their activity. We use a small molecule-regulated heterodimerization system to rapidly control the localization of RH-RhoGEFs. Acute localization of the proteins to the plasma membrane activates RhoA within minutes and to levels that are comparable with activation of RhoA by hormonal stimulation of G protein-coupled receptors. The catalytic activity of membrane-localized RhoGEFs is not dependent on activated Gα13. We further show that the conserved RH domains can rewire two different RacGEFs to activate Rac1 in response to a traditional activator of RhoA. Thus, RH domains act as independent detectors for activated Gα13 and are sufficient to modulate the activity of RhoGEFs by hormones via mediating their localization to substrate, membrane-associated RhoA.
机译:G蛋白信号同源性(RH)Rho鸟嘌呤核苷酸交换因子(Rhogefs)(P115Rhogef,白血病相关的Rhogef和PDZ-Rhogef)的调节剂含有RH结构域,是单体GTPA酶RHOA的特异性GEF。 RH结构域与G12异映酰基GTP酶的α亚基相互作用。活化的Gα13适度刺激P115RHOGEF和白血病相关的Rhogef的交换活性,但不是PDZ-Rhogef。因为所有三种Rh-rhogefs可以在活化的Gα13表达时将其定位于血浆膜,所以已经提出了这些Rhogefs的细胞定位作为控制其活性的机制。我们使用小分子调节的异二聚化系统来快速控制Rh-Rhogefs的定位。蛋白质对血浆膜的急性定位在几分钟和水平以通过G蛋白偶联受体的激素刺激与RHOA的活化相当的水平激活RHOA。膜局部rhogefs的催化活性不依赖于活化的Gα13。我们进一步表明,保守的RH域可以重新绕两种不同的速率来激活RAC1以响应RHOA的传统激活器。因此,RH结构域用作活化的Gα13的独立探测器,并且足以通过将它们的定位介导给衬底,膜相关的RHOA来调节激素来调节Rhogefs的活性。

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