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c-Ha-Ras蛋白第31位氨基酸残基与Raf-1和RalGDS的相互作用。

Interactions of the amino acid residue at position 31 of the c-Ha-Ras protein with Raf-1 and RalGDS.

作者信息

Shirouzu M, Morinaka K, Koyama S, Hu C D, Hori-Tamura N, Okada T, Kariya K, Kataoka T, Kikuchi A, Yokoyama S

机构信息

Cellular Signaling Laboratory, Institute of Physical and Chemical Research (RIKEN), Hirosawa 2-1, Wako-shi, Saitama 351-01, Japan.

出版信息

J Biol Chem. 1998 Mar 27;273(13):7737-42. doi: 10.1074/jbc.273.13.7737.

Abstract

The Ras and Rap1A proteins can bind to the Raf and RalGDS families. Ras and Rap1A have Glu and Lys, respectively, at position 31. In the present study, we analyzed the effects of mutating the Glu at position 31 of the c-Ha-Ras protein to Asp, Ala, Arg, and Lys on the interactions with Raf-1 and RalGDS. The Ras-binding domain (RBD) of Raf-1 binds the E31R and E31K Ras mutants less tightly than the wild-type, E31A, and E31D Ras proteins; the introduction of the positively charged Lys or Arg residue at position 31 specifically impairs the binding of Ras with the Raf-1 RBD. On the other hand, the ability of the oncogenic RasG12V protein to activate Raf-1 in HEK293 cells was only partially reduced by the E31R mutation but was drastically impaired by the E31K mutation. Correspondingly, RasG12V(E31K) as well as Rap1A, but not RasG12V(E31R), exhibited abnormally tight binding with the cysteine-rich domain of Raf-1. On the other hand, the E31A, E31R, and E31K mutations, but not the E31D mutation, enhanced the RalGDS RBD-binding activity of Ras, indicating that the negative charge at position 31 of Ras is particularly unfavorable to the interaction with the RalGDS RBD. RasG12V(E31K), RasG12V(E31A), and Rap1A stimulate the RalGDS action more efficiently than the wild-type Ras in the liposome reconstitution assay. All of these results clearly show that the sharp contrast between the characteristics of Ras and Rap1A, with respect to the interactions with Raf-1 and RalGDS, depends on their residues at position 31.

摘要

Ras蛋白和Rap1A蛋白可与Raf家族和RalGDS家族结合。Ras和Rap1A在第31位氨基酸分别为Glu和Lys。在本研究中,我们分析了将c-Ha-Ras蛋白第31位的Glu突变为Asp、Ala、Arg和Lys后,对其与Raf-1和RalGDS相互作用的影响。Raf-1的Ras结合结构域(RBD)与E31R和E31K Ras突变体的结合比野生型、E31A和E31D Ras蛋白更松散;在第31位引入带正电荷的Lys或Arg残基会特异性损害Ras与Raf-1 RBD的结合。另一方面,致癌性RasG12V蛋白在HEK293细胞中激活Raf-1的能力仅因E31R突变而部分降低,但因E31K突变而大幅受损。相应地,RasG12V(E31K)以及Rap1A,而非RasG12V(E31R),与Raf-1的富含半胱氨酸结构域表现出异常紧密的结合。另一方面,E31A、E31R和E31K突变增强了Ras与RalGDS RBD的结合活性,而E31D突变则无此作用,这表明Ras第31位的负电荷对其与RalGDS RBD的相互作用尤为不利。在脂质体重组实验中,RasG12V(E31K)、RasG12V(E31A)和Rap1A比野生型Ras更有效地刺激RalGDS的作用。所有这些结果清楚地表明,Ras和Rap1A在与Raf-1和RalGDS相互作用方面的特征形成鲜明对比,这取决于它们在第31位的氨基酸残基。

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