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Raf-1的富含半胱氨酸区域与翻译后修饰的Ha-Ras的激活结构域相互作用。

Cysteine-rich region of Raf-1 interacts with activator domain of post-translationally modified Ha-Ras.

作者信息

Hu C D, Kariya K, Tamada M, Akasaka K, Shirouzu M, Yokoyama S, Kataoka T

机构信息

Department of Physiology II, Kobe University School of Medicine, Japan.

出版信息

J Biol Chem. 1995 Dec 22;270(51):30274-7. doi: 10.1074/jbc.270.51.30274.

Abstract

The interaction between "switch I/effector domain" of Ha-Ras and the Ras-binding domain (RBD, amino acid 51-131) of Raf-1 is essential for signal transduction. However, the importance of the "activator domain" (approximately corresponding to amino acids 26-28 and 40-49) of Ha-Ras and of the "cysteine-rich region" (CRR, amino acids 152-184) of Raf-1 have also been proposed. Here, we found that Raf-1 CRR interacts directly with Ha-Ras independently of RBD and that participation of CRR is necessary for efficient Ras-Raf binding. Furthermore, Ha-Ras carrying mutations (N26G and V45E) in the activator domain failed to bind CRR, whereas they bound RBD normally. On the contrary, Ha-Ras carrying mutations in the switch I/effector domain exhibited severely reduced ability to bind RBD, whereas their ability to bind CRR was unaffected. Mutants that bound to either RBD or CRR alone failed to activate Raf-1. Ha-Ras without post-translational modifications, which lacks the ability to activate Raf-1, selectively lost the ability to bind CRR. These results suggest that the activator domain of Ha-Ras participates in activation of Raf-1 through interaction with CRR and that post-translational modifications of Ha-Ras are required for this interaction.

摘要

Ha-Ras的“开关I/效应器结构域”与Raf-1的Ras结合结构域(RBD,氨基酸51-131)之间的相互作用对于信号转导至关重要。然而,也有人提出Ha-Ras的“激活结构域”(大约对应于氨基酸26-28和40-49)以及Raf-1的“富含半胱氨酸区域”(CRR,氨基酸152-184)的重要性。在此,我们发现Raf-1的CRR独立于RBD直接与Ha-Ras相互作用,并且CRR的参与对于有效的Ras-Raf结合是必要的。此外,在激活结构域携带突变(N26G和V45E)的Ha-Ras无法结合CRR,而它们与RBD的结合正常。相反,在开关I/效应器结构域携带突变的Ha-Ras与RBD结合的能力严重降低,而它们与CRR结合的能力未受影响。仅与RBD或CRR结合的突变体无法激活Raf-1。没有翻译后修饰且缺乏激活Raf-1能力的Ha-Ras选择性地丧失了结合CRR的能力。这些结果表明,Ha-Ras的激活结构域通过与CRR相互作用参与Raf-1的激活,并且这种相互作用需要Ha-Ras的翻译后修饰。

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