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与rap1/Krev-1/smg p21的C末端香叶基香叶基化区域相互作用的刺激性GDP/GTP交换蛋白(smg GDS)的功能结构域。

The functional domain of the stimulatory GDP/GTP exchange protein (smg GDS) which interacts with the C-terminal geranylgeranylated region of rap1/Krev-1/smg p21.

作者信息

Kotani K, Kikuchi A, Doi K, Kishida S, Sakoda T, Kishi K, Takai Y

机构信息

Department of Biochemistry, Kobe University, School of Medicine, Japan.

出版信息

Oncogene. 1992 Sep;7(9):1699-704.

PMID:1501882
Abstract

rap1/Krev-1/smg p21 (smg p21), a member of the small GTP-binding protein (G protein) superfamily, has a geranylgeranylated cysteine residue and clustered basic amino acids in the C-terminal region. The GDP/GTP exchange reaction of smg p21 is regulated by smg GDS, which is also active on Ki-ras p21 and rho p21. The C-terminal region of smg p21 is essential for its interaction with smg GDS. Moreover, smg p21 is phosphorylated by cyclic AMP- and cyclic GMP-dependent protein kinases at the serine residue between the polybasic region and the prenylated cysteine residue, and this phosphorylation initiates the smg GDS-induced smg p21 activation. Thus, the C-terminal cationic and hydrophobic region is important for the regulation of the smg p21 activity. In the present study, we attempted to determine the functional domain of smg GDS which interacts with the C-terminal region of smg p21 by use of a cross-link method and a site-directed mutagenesis method. The region of smg GDS cross-linked with the C-terminal region of smg p21B was residues 444-492, which is located at the C-terminal fifth of smg GDS. On deletion of these residues, smg GDS became inactive on smg p21B, Ki-ras p21 and rhoA p21. These results indicate that residues 444-492 of smg GDS are at least one of the domains which interact with the C-terminal region of its substrate small G proteins.

摘要

Rap1/Krev-1/小GTP结合蛋白(G蛋白)超家族成员之一的小GTP结合蛋白(smg p21),在其C末端区域有一个香叶基香叶基化的半胱氨酸残基和成簇的碱性氨基酸。smg p21的GDP/GTP交换反应受smg GDS调节,smg GDS对Ki-ras p21和rho p21也有活性。smg p21的C末端区域对于其与smg GDS的相互作用至关重要。此外,smg p21在多碱性区域和异戊二烯化半胱氨酸残基之间的丝氨酸残基处被环磷酸腺苷和环磷酸鸟苷依赖性蛋白激酶磷酸化,这种磷酸化启动了smg GDS诱导的smg p21激活。因此,C末端阳离子和疏水区域对于smg p21活性的调节很重要。在本研究中,我们试图通过交联方法和定点诱变方法确定smg GDS与smg p21的C末端区域相互作用的功能结构域。与smg p21B的C末端区域交联的smg GDS区域是444-492位残基,位于smg GDS的C末端五分之一处。缺失这些残基后,smg GDS对smg p21B、Ki-ras p21和rhoA p21失去活性。这些结果表明,smg GDS的444-492位残基至少是与其底物小G蛋白的C末端区域相互作用的结构域之一。

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