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Ras/ Raf富含半胱氨酸结构域相互作用的结合决定因素及功能后果的阐释。

Elucidation of binding determinants and functional consequences of Ras/Raf-cysteine-rich domain interactions.

作者信息

Williams J G, Drugan J K, Yi G S, Clark G J, Der C J, Campbell S L

机构信息

Department of Biochemistry and Biophysics, Department of Pharmacology, Lineberger Comprehensive Cancer Center, University of North Carolina, Chapel Hill, North Carolina 27599, USA.

出版信息

J Biol Chem. 2000 Jul 21;275(29):22172-9. doi: 10.1074/jbc.M000397200.

Abstract

Raf-1 is a critical downstream target of Ras and contains two distinct domains that bind Ras. The first Ras-binding site (RBS1) in Raf-1 has been shown to be essential for Ras-mediated translocation of Raf-1 to the plasma membrane, whereas the second site, in the Raf-1 cysteine-rich domain (Raf-CRD), has been implicated in regulating Raf kinase activity. While recognition elements that promote Ras.RBS1 complex formation have been characterized, relatively little is known about Ras/Raf-CRD interactions. In this study, we have characterized interactions important for Ras binding to the Raf-CRD. Reconciling conflicting reports, we found that these interactions are essentially independent of the guanine nucleotide bound state, but instead, are enhanced by post-translational modification of Ras. Specifically, our findings indicate that Ras farnesylation is sufficient for stable association of Ras with the Raf-CRD. Furthermore, we have also identified a Raf-CRD variant that is impaired specifically in its interactions with Ras. NMR data also suggests that residues proximal to this mutation site on the Raf-CRD form contacts with Ras. This Raf-CRD mutant impairs the ability of Ras to activate Raf kinase, thereby providing additional support that Ras interactions with the Raf-CRD are important for Ras-mediated activation of Raf-1.

摘要

Raf-1是Ras的关键下游靶点,包含两个与Ras结合的不同结构域。Raf-1中的第一个Ras结合位点(RBS1)已被证明对Ras介导的Raf-1向质膜的转位至关重要,而第二个位点位于Raf-1富含半胱氨酸的结构域(Raf-CRD)中,与调节Raf激酶活性有关。虽然促进Ras.RBS1复合物形成的识别元件已得到表征,但关于Ras/Raf-CRD相互作用的了解相对较少。在本研究中,我们表征了对Ras与Raf-CRD结合重要的相互作用。为调和相互矛盾的报道,我们发现这些相互作用基本上与结合鸟嘌呤核苷酸的状态无关,而是通过Ras的翻译后修饰得到增强。具体而言,我们的研究结果表明Ras法尼基化足以使Ras与Raf-CRD稳定结合。此外,我们还鉴定了一种Raf-CRD变体,其与Ras的相互作用特别受损。核磁共振数据还表明,Raf-CRD上该突变位点附近的残基与Ras形成接触。这种Raf-CRD突变体损害了Ras激活Raf激酶的能力,从而进一步支持了Ras与Raf-CRD的相互作用对Ras介导的Raf-1激活很重要。

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