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原癌基因vav产物对Rac-1 GDP/GTP交换的磷酸酪氨酸依赖性激活。

Phosphotyrosine-dependent activation of Rac-1 GDP/GTP exchange by the vav proto-oncogene product.

作者信息

Crespo P, Schuebel K E, Ostrom A A, Gutkind J S, Bustelo X R

机构信息

Molecular Signaling Unit, Laboratory of Cellular Development and Oncology, National Institute of Dental Research, National Institutes of Health, Bethesda, Maryland 20892, USA.

出版信息

Nature. 1997 Jan 9;385(6612):169-72. doi: 10.1038/385169a0.

Abstract

The oncogenic protein Vav harbours a complex array of structural motifs, including leucine-rich, Dbl-homology, pleckstrin-homology, zinc-finger, SH2 and SH3 domains. Upon stimulation by antigens or mitogens, Vav becomes phosphorylated on key tyrosine residues and associates with other signalling proteins, including the mitogen receptors Zap-70 (ref. 6), Vap-1 (ref. 5) and Slp-76 (ref. 7). Disruption of the vav locus by homologous recombination causes severe defects in signalling by primary antigen receptors, leading to abnormal lymphocyte proliferation and lymphopenia. Despite the importance of Vav cell signalling, the function of this protein remains unknown. Here we show that tyrosine-phosphorylated Vav, but not the non-phosphorylated protein, catalyses GDP/GTP exchange on Rac-1, a protein implicated in cell proliferation and cytoskeletal organization, causing this GTPase to switch from its inactive to its active state. Transfection experiments also show that phosphorylation of Vav on tyrosine residues leads to nucleotide exchange on Rac-1 in vivo and stimulates c-Jun kinase, a downstream element in the signalling pathway involving this GTPase. Our results have identified a function for Vav and define a mechanism in which engaged membrane receptors activate its signalling pathway.

摘要

致癌蛋白Vav含有一系列复杂的结构基序,包括富含亮氨酸的结构域、Dbl同源结构域、普列克底物蛋白同源结构域、锌指结构域、SH2结构域和SH3结构域。在受到抗原或促细胞分裂剂刺激后,Vav在关键酪氨酸残基上发生磷酸化,并与其他信号蛋白结合,包括促细胞分裂剂受体Zap-70(参考文献6)、Vap-1(参考文献5)和Slp-76(参考文献7)。通过同源重组破坏vav基因座会导致初级抗原受体信号传导出现严重缺陷,从而导致淋巴细胞异常增殖和淋巴细胞减少。尽管Vav在细胞信号传导中很重要,但该蛋白的功能仍然未知。在这里,我们表明酪氨酸磷酸化的Vav而非未磷酸化的蛋白能催化Rac-1上的GDP/GTP交换,Rac-1是一种与细胞增殖和细胞骨架组织有关的蛋白,可使这种GTP酶从无活性状态转变为活性状态。转染实验还表明,Vav酪氨酸残基的磷酸化会导致体内Rac-1上的核苷酸交换,并刺激c-Jun激酶,c-Jun激酶是涉及这种GTP酶的信号通路中的下游元件。我们的研究结果确定了Vav的一种功能,并定义了一种机制,即参与的膜受体激活其信号通路。

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