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Ras效应蛋白Rlf对基因诱导和细胞生长的刺激作用。

Stimulation of gene induction and cell growth by the Ras effector Rlf.

作者信息

Wolthuis R M, de Ruiter N D, Cool R H, Bos J L

机构信息

Laboratory for Physiological Chemistry, Utrecht University, Universiteitsweg 100, 3584 CG Utrecht, The Netherlands.

出版信息

EMBO J. 1997 Nov 17;16(22):6748-61. doi: 10.1093/emboj/16.22.6748.

Abstract

Rlf is a ubiquitously expressed distinct relative of RalGDS that interacts with active Ras in vitro. We now demonstrate that Rlf, when co-expressed with Ras mutants, associates in vivo with RasV12 and the effector-domain mutant RasV12G37, but not with RasV12E38 or RasV12C40. Rlf exhibits guanine nucleotide exchange activity towards the small GTPase Ral and, importantly, Rlf-induced Ral activation is stimulated by active Ras. In addition, RasV12 and RasV12G37 synergize with Rlf in the transcriptional activation of the c-fos promoter. Rlf, when targeted to the plasma membrane using the Ras farnesyl attachment site (Rlf-CAAX), is constitutively active, inducing both Ral activation and c-fos promoter activity. Rlf-CAAX-induced gene expression is insensitive to dominant negative Ras and the MEK inhibitor PD98059, and involves activation of the serum response element. Furthermore, expression of Rlf-CAAX is sufficient to induce proliferation of NIH 3T3 cells under low-serum conditions. These data demonstrate that Rlf is an effector of Ras which functions as an exchange factor for Ral. Rlf mediates a distinct Ras-induced signalling pathway to gene induction. Finally, a constitutively active form of Rlf can stimulate transcriptional activation and cell growth.

摘要

Rlf是RalGDS的一种广泛表达的独特相关蛋白,它在体外与活性Ras相互作用。我们现在证明,当Rlf与Ras突变体共表达时,在体内它与RasV12和效应结构域突变体RasV12G37结合,但不与RasV12E38或RasV12C40结合。Rlf对小GTP酶Ral表现出鸟嘌呤核苷酸交换活性,重要的是,活性Ras可刺激Rlf诱导的Ral激活。此外,RasV12和RasV12G37在c-fos启动子的转录激活中与Rlf协同作用。当使用Ras法尼基化附着位点(Rlf-CAAX)将Rlf靶向质膜时,它组成性激活,诱导Ral激活和c-fos启动子活性。Rlf-CAAX诱导的基因表达对显性负性Ras和MEK抑制剂PD98059不敏感,且涉及血清反应元件的激活。此外,Rlf-CAAX的表达足以在低血清条件下诱导NIH 3T3细胞增殖。这些数据表明,Rlf是Ras的效应器,作为Ral的交换因子发挥作用。Rlf介导一条独特的Ras诱导的信号通路至基因诱导。最后,Rlf的组成性激活形式可刺激转录激活和细胞生长。

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