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RGS7的DEP结构域与Gbeta5亚基之间的分子内相互作用。

Intramolecular interaction between the DEP domain of RGS7 and the Gbeta5 subunit.

作者信息

Narayanan Vijaya, Sandiford Simone L, Wang Qiang, Keren-Raifman Tal, Levay Konstantin, Slepak Vladlen Z

机构信息

Department of Molecular and Cellular Pharmacology and Neuroscience Program, University of Miami, Miami, Florida 33136, USA.

出版信息

Biochemistry. 2007 Jun 12;46(23):6859-70. doi: 10.1021/bi700524w. Epub 2007 May 19.

Abstract

The R7 family of RGS proteins (RGS6, -7, -9, -11) is characterized by the presence of three domains: DEP, GGL, and RGS. The RGS domain interacts with Galpha subunits and exhibits GAP activity. The GGL domain permanently associates with Gbeta5. The DEP domain interacts with the membrane anchoring protein, R7BP. Here we provide evidence for a novel interaction within this complex: between the DEP domain and Gbeta5. GST fusion of the RGS7 DEP domain (GST-R7DEP) binds to both native and recombinant Gbeta5-RGS7, recombinant Gbetagamma complexes, and monomeric Gbeta5 and Gbeta1 subunits. Co-immunoprecipitation and FRET assays supported the GST pull-down experiments. GST-R7DEP reduced FRET between CFP-Gbeta5 and YFP-RGS7, indicating that the DEP-Gbeta5 interaction is dynamic. In transfected cells, R7BP had no effect on the Gbeta5/RGS7 pull down by GST-R7DEP. The DEP domain of RGS9 did not bind to Gbeta5. Substitution of RGS7 Glu-73 and Asp-74 for the corresponding Ser and Gly residues (ED/SG mutation) of RGS9 diminished the DEP-Gbeta5 interaction. In the absence of R7BP both the wild-type RGS7 and the ED/SG mutant attenuated muscarinic M3 receptor-mediated Ca2+ mobilization. In the presence of R7BP, wild-type RGS7 lost this inhibitory activity, whereas the ED/SG mutant remained active. Taken together, our results are consistent with the following model. The Gbeta5-RGS7 molecule can exist in two conformations: "closed" and "open", when the DEP domain and Gbeta5 subunit either do or do not interact. The closed conformation appears to be less active with respect to its effect on Gq-mediated signaling than the open conformation.

摘要

RGS蛋白的R7家族(RGS6、-7、-9、-11)的特征是存在三个结构域:DEP、GGL和RGS。RGS结构域与Gα亚基相互作用并表现出GAP活性。GGL结构域与Gβ5永久结合。DEP结构域与膜锚定蛋白R7BP相互作用。在此,我们提供了该复合物内一种新相互作用的证据:DEP结构域与Gβ5之间的相互作用。RGS7 DEP结构域的GST融合蛋白(GST-R7DEP)与天然和重组的Gβ5-RGS7、重组的Gβγ复合物以及单体Gβ5和Gβ1亚基结合。免疫共沉淀和FRET分析支持了GST下拉实验。GST-R7DEP降低了CFP-Gβ5和YFP-RGS7之间的FRET,表明DEP-Gβ5相互作用是动态的。在转染细胞中,R7BP对GST-R7DEP下拉的Gβ5/RGS7没有影响。RGS9的DEP结构域不与Gβ5结合。将RGS7的Glu-73和Asp-74替换为RGS9相应的Ser和Gly残基(ED/SG突变)减弱了DEP-Gβ5相互作用。在没有R7BP的情况下,野生型RGS7和ED/SG突变体均减弱了毒蕈碱M3受体介导的Ca2+动员。在有R7BP存在时,野生型RGS7失去了这种抑制活性,而ED/SG突变体仍然活跃。综上所述,我们的结果与以下模型一致。Gβ5-RGS7分子可以存在两种构象:“封闭”和“开放”,取决于DEP结构域和Gβ5亚基是否相互作用。相对于开放构象,封闭构象对Gq介导的信号传导的影响似乎活性较低。

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