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Sst2是Gpa1的一种GTP酶激活蛋白:酵母中同源RGS-Gα蛋白对的纯化与特性分析

Sst2 is a GTPase-activating protein for Gpa1: purification and characterization of a cognate RGS-Galpha protein pair in yeast.

作者信息

Apanovitch D M, Slep K C, Sigler P B, Dohlman H G

机构信息

Department of Pharmacology and Molecular Cardiobiology Program, Boyer Center for Molecular Medicine, Yale University School of Medicine, New Haven, Connecticut 06536, USA.

出版信息

Biochemistry. 1998 Apr 7;37(14):4815-22. doi: 10.1021/bi9729965.

Abstract

Genetic studies in the yeast Saccharomyces cerevisiae have shown that SST2 promotes pheromone desensitization in vivo. Sst2 is the founding member of the RGS (regulators of G protein signaling) family of proteins, which in mammals act as GAPs (GTPase activating proteins) for several subfamilies of Galpha proteins in vitro. A similar activity for Sst2 has not been demonstrated, and it is not self-evident from sequence homology arguments alone. Here we describe the purification of Sst2 and its cognate Galpha protein (Gpa1) in yeast, and demonstrate Sst2-stimulated Gpa1 GTPase activity. His-tagged versions of Sst2 and Gpa1 were expressed in E. coli, and purified using Ni2+-agarose and ion exchange chromatography. Time-course binding experiments reveal that Sst2 does not affect the binding or release of guanine nucleotides. Similarly, steady-state GTPase assays reveal that Sst2 does not alter the overall rate of hydrolysis, including the rate-limiting nucleotide exchange step. Single-turnover GTPase assays reveal, however, that Sst2 is a potent stimulator of GTP hydrolysis. Sst2 also exhibits GAP activity for mammalian Goalpha, and the mammalian RGS protein GAIP exhibits GAP activity for Gpa1. Finally, we show that Sst2 binds with highest affinity to the transition state of Gpa1 (GDP-AlF4--bound), and with much lower affinity to the inactive (GDP-bound) and active (GTPgammaS-bound) conformations. These experiments represent the first biochemical characterization of Gpa1 and Sst2, and provide a molecular basis for their well-established biological roles in signaling and desensitization.

摘要

对酿酒酵母的遗传学研究表明,SST2在体内可促进信息素脱敏。Sst2是RGS(G蛋白信号调节因子)蛋白家族的创始成员,在哺乳动物中,该家族蛋白在体外对几个Gα蛋白亚家族具有GAP(GTP酶激活蛋白)活性。尚未证实Sst2具有类似活性,仅从序列同源性分析也无法直接得出这一结论。在此,我们描述了酵母中Sst2及其同源Gα蛋白(Gpa1)的纯化过程,并证明了Sst2可刺激Gpa1的GTP酶活性。带有His标签的Sst2和Gpa1在大肠杆菌中表达,并用Ni2+ -琼脂糖和离子交换色谱法进行纯化。时间进程结合实验表明,Sst2不影响鸟嘌呤核苷酸的结合或释放。同样,稳态GTP酶分析表明,Sst2不会改变整体水解速率,包括限速核苷酸交换步骤。然而,单轮GTP酶分析表明,Sst2是GTP水解的有效刺激剂。Sst2对哺乳动物Goα也具有GAP活性,而哺乳动物RGS蛋白GAIP对Gpa1具有GAP活性。最后,我们表明Sst2与Gpa1的过渡态(结合GDP-AlF4-)具有最高亲和力,与无活性(结合GDP)和活性(结合GTPγS)构象的亲和力则低得多。这些实验首次对Gpa1和Sst2进行了生化特性描述,并为它们在信号传导和脱敏中已确立的生物学作用提供了分子基础。

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