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SmgGDS可稳定Rac1 GTP结合蛋白的核苷酸结合形式和游离形式,并通过替代酶机制刺激GTP/GDP交换。

SmgGDS stabilizes nucleotide-bound and -free forms of the Rac1 GTP-binding protein and stimulates GTP/GDP exchange through a substituted enzyme mechanism.

作者信息

Chuang T H, Xu X, Quilliam L A, Bokoch G M

机构信息

Department of Immunology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

Biochem J. 1994 Nov 1;303 ( Pt 3)(Pt 3):761-7. doi: 10.1042/bj3030761.

Abstract

The Rac proteins, Rac1 and Rac2, are essential components of the NADPH oxidase system of phagocytes and regulate the actin assembly associated with membrane ruffling. These functions are controlled by the GTP-bound form of Rac. The biochemical interaction between Rac and its only known GDP-dissociation stimulator (termed smgGDS) was characterized. SmgGDS was able to stimulate the incorporation of guanosine 5'-[gamma-thio]-triphosphate GTP[gamma S] into the RhoA, Rac2, Rac1, Rap1A and CDC42Hs GTP-binding proteins, but the activity was greatest toward RhoA and Rac2. Isoprenoid modification of these proteins was not absolutely required for the interaction with smgGDS. Interestingly, the activity of smgGDS toward Rac1 could not be observed in a [3H]GDP/GTP exchange assay under conditions where it stimulated incorporation of GTP[gamma S] into Rac1. We determined that smgGDS prevented the loss of Rac1 activity during the [3H]GDP/GTP exchange assay by demonstrating the ability of smgGDS to inhibit the loss of Rac1 GTP[gamma S]-binding during incubations at 30 degrees C. This stabilizing effect was exactly counterbalanced by the ability of smgGDS to stimulate the release of [3H]GDP from Rac1, thereby producing no net observable effect in the exchange assay. SmgGDS was able to effectively stimulate the release of GDP but not GTP[gamma S] from Rac1. SmgGDS maintains Rac1 in a nucleotide-free form after release of GDP, indicating that the reaction between Rac1 and smgGDS involves a substituted enzyme mechanism.

摘要

Rac蛋白,即Rac1和Rac2,是吞噬细胞NADPH氧化酶系统的重要组成部分,并调节与膜皱褶相关的肌动蛋白组装。这些功能由GTP结合形式的Rac控制。对Rac与其唯一已知的GDP解离刺激因子(称为smgGDS)之间的生化相互作用进行了表征。SmgGDS能够刺激鸟苷5'-[γ-硫代]-三磷酸(GTP[γS])掺入RhoA、Rac2、Rac1、Rap1A和CDC42Hs GTP结合蛋白中,但对RhoA和Rac2的活性最强。这些蛋白的类异戊二烯修饰对于与smgGDS的相互作用并非绝对必需。有趣的是,在刺激GTP[γS]掺入Rac1的条件下,在[3H]GDP/GTP交换试验中未观察到smgGDS对Rac1的活性。我们通过证明smgGDS在30℃孵育期间抑制Rac1 GTP[γS]结合丧失的能力,确定smgGDS在[3H]GDP/GTP交换试验中防止了Rac1活性的丧失。这种稳定作用正好被smgGDS刺激[3H]GDP从Rac1释放的能力所抵消,从而在交换试验中没有产生可观察到的净效应。SmgGDS能够有效地刺激Rac1释放GDP,但不能刺激释放GTP[γS]。在GDP释放后,SmgGDS使Rac1保持无核苷酸形式,这表明Rac1与smgGDS之间的反应涉及替代酶机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc95/1137612/63ce24519023/biochemj00076-0090-a.jpg

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