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Ras激活的其他机制是互补的,有利于ras-GTP的形成。

Alternate mechanisms of ras activation are complementary and favor and formation of ras-GTP.

作者信息

Patel G, MacDonald M J, Khosravi-Far R, Hisaka M M, Der C J

机构信息

La Jolla Cancer Research Foundation, California 92037.

出版信息

Oncogene. 1992 Feb;7(2):283-8.

PMID:1549350
Abstract

The mechanisms of ras activation by mutations in residue 61 and in the NKXD guanine nucleotide-binding consensus sequence (ras residues 116-119) have been evaluated. Weakly transforming mutations that either reduce intrinsic and GTPase-activating protein (GAP)-stimulated GTPase activities (61P) or enhance guanine nucleotide exchange rates (116H, 119E) were combined into the same H-ras proteins. The resulting double-mutant proteins exhibited significantly stronger transforming forming activities than are observed with each individual mutation, suggesting that the consequences of these two different mechanisms of activation favor maintenance of ras in the active form, which is GTP bound. In vivo nucleotide association analysis demonstrated a direct relationship between ras-GTP formation and transforming activity. Although both 61P and 61L mutations result in reduced intrinsic GTPase activity and loss of GAP stimulation in vitro, only H-ras(61L) exhibits strong transforming activity. While H-ras(61L) is found predominantly in the GTP-bound form, H-ras(61P) is predominantly complexed with GDP in vivo. Thus, in vitro GAP stimulation of GTPase activity does not directly correlate with transforming potential, suggesting that other ras-specific regulatory components may also be important in regulating the cycling of ras between CDP- and GTP-bound states.

摘要

已对第61位残基以及NKXD鸟嘌呤核苷酸结合共有序列(ras残基116 - 119)中的突变激活ras的机制进行了评估。将那些要么降低内在及GTP酶激活蛋白(GAP)刺激的GTP酶活性(61P),要么提高鸟嘌呤核苷酸交换速率(116H、119E)的弱转化突变组合到同一H - ras蛋白中。所得的双突变蛋白表现出比每个单独突变所观察到的显著更强的转化活性,这表明这两种不同激活机制的结果有利于将ras维持在与GTP结合的活性形式。体内核苷酸结合分析证明了ras-GTP形成与转化活性之间存在直接关系。尽管61P和61L突变在体外均导致内在GTP酶活性降低以及GAP刺激丧失,但只有H - ras(61L)表现出强转化活性。虽然H - ras(61L)主要以与GTP结合的形式存在,但H - ras(61P)在体内主要与GDP形成复合物。因此,体外GAP对GTP酶活性的刺激与转化潜能并不直接相关,这表明其他ras特异性调节成分在调节ras在与CDP和GTP结合状态之间的循环中可能也很重要。

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