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与Ras相关的蛋白质Rheb经法尼基化修饰,并拮抗Ras信号传导和细胞转化。

The Ras-related protein Rheb is farnesylated and antagonizes Ras signaling and transformation.

作者信息

Clark G J, Kinch M S, Rogers-Graham K, Sebti S M, Hamilton A D, Der C J

机构信息

Department of Pharmacology, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

J Biol Chem. 1997 Apr 18;272(16):10608-15. doi: 10.1074/jbc.272.16.10608.

DOI:10.1074/jbc.272.16.10608
PMID:9099708
Abstract

Presently, nothing is known about the function of the Ras-related protein Rheb. Since Rheb shares significant sequence identity with the core effector domains of Ras and KRev-1/Rap1A, it may share functional similarities with these two structurally related, yet functionally distinct, small GTPases. Furthermore, since like Ras, Rheb terminates with a COOH terminus that is likely to signal for farnesylation, it may be a target for the farnesyltransferase inhibitors that block Ras processing and function. To compare Rheb function with those of Ras and KRev-1, we introduced mutations into Rheb that generate constitutively active or dominant negative forms of Ras and Ras-related proteins and were designated Rheb(64L) and Rheb(20N), respectively. Expression of wild type or mutant Rheb did not alter the morphology or growth properties of NIH 3T3 cells. Thus, aberrant Rheb function is distinct from that of Ras and fails to cause cellular transformation. Instead, similar to KRev-1, co-expression of Rheb antagonized oncogenic Ras transformation and signaling. In vitro and in vivo analyses showed that like Ras, Rheb proteins are farnesylated and are sensitive to farnesyltransferase inhibition. Thus, it is possible that Rheb function may be inhibited by farnesyltransferase inhibitors treatment and, consequently, may contribute to the ability of these inhibitors to impair Ras transformation.

摘要

目前,对于Ras相关蛋白Rheb的功能尚无了解。由于Rheb与Ras以及KRev-1/Rap1A的核心效应结构域具有显著的序列同源性,它可能与这两种结构相关但功能不同的小GTP酶具有功能相似性。此外,由于与Ras类似,Rheb的羧基末端可能是法尼基化的信号位点,它可能是阻断Ras加工和功能的法尼基转移酶抑制剂的作用靶点。为了比较Rheb与Ras和KRev-1的功能,我们对Rheb进行了突变,产生了Ras和Ras相关蛋白的组成型激活或显性负性形式,分别命名为Rheb(64L)和Rheb(20N)。野生型或突变型Rheb的表达并未改变NIH 3T3细胞的形态或生长特性。因此,异常的Rheb功能与Ras不同,不会导致细胞转化。相反,与KRev-1类似,Rheb的共表达拮抗致癌性Ras转化和信号传导。体外和体内分析表明,与Ras一样,Rheb蛋白也会发生法尼基化,并且对法尼基转移酶抑制敏感。因此,有可能法尼基转移酶抑制剂处理可抑制Rheb功能,从而有助于这些抑制剂削弱Ras转化的能力。

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