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Vav蛋白生物活性的结构决定因素。

Structural determinants for the biological activity of Vav proteins.

作者信息

Zugaza José L, López-Lago Miguel A, Caloca María J, Dosil Mercedes, Movilla Nieves, Bustelo Xosé R

机构信息

Centro de Investigación del Cáncer and Instituto de Biologia Molecular y Celular del Cáncer, CSIC-University of Salamanca, Campus Unamuno, E-37007 Salamanca, Spain.

出版信息

J Biol Chem. 2002 Nov 22;277(47):45377-92. doi: 10.1074/jbc.M208039200. Epub 2002 Sep 12.

Abstract

We have used an extensive mutagenesis approach to study the specific role of the eight structural domains of Vav during both the activation and signaling steps of this Rac1 exchange factor. Our results indicate that several Vav domains (Dbl homology, pleckstrin homology, and zinc finger) are essential for all the biological activities tested, whereas others are required for discrete, cell type-specific biological effects. Interestingly, we have found that Vav domains have no unique functions. Thus, the calponin homology domain mediates the inhibition of Vav both in vitro and in vivo but, at the same time, exerts effector functions in lymphocytes upon receptor activation. The Vav SH2 and SH3 regions play regulatory roles in the activation of Vav in fibroblasts, mediating both its phosphorylation and translocation to the plasma membrane. In contrast, the Vav SH2 and SH3 regions act as scaffolding platforms in T-cells, ensuring the proper phosphorylation of Vav and the subsequent engagement of downstream effectors. We also provide evidence indicating that the zinc finger region exerts at least three different functional roles in Vav, aiding in the down-regulation of its basal activity, the engagement of substrates, and the induction of ancillary pathways required for cell transformation. Finally, the results obtained are consistent with a new regulatory model for Vav, in which the calponin homology region inhibits the basal activity of Vav through interactions with the zinc finger region.

摘要

我们采用了广泛的诱变方法来研究Vav的八个结构域在这种Rac1交换因子的激活和信号传导步骤中的特定作用。我们的结果表明,几个Vav结构域(Dbl同源结构域、pleckstrin同源结构域和锌指结构域)对于所有测试的生物学活性都是必不可少的,而其他结构域则是离散的、细胞类型特异性生物学效应所必需的。有趣的是,我们发现Vav结构域没有独特的功能。因此,钙调蛋白同源结构域在体外和体内均介导对Vav的抑制,但同时在受体激活后在淋巴细胞中发挥效应功能。Vav的SH2和SH3区域在成纤维细胞中Vav的激活中起调节作用,介导其磷酸化和向质膜的转位。相反,Vav的SH2和SH3区域在T细胞中充当支架平台,确保Vav的正确磷酸化以及下游效应器的后续结合。我们还提供证据表明,锌指区域在Vav中发挥至少三种不同的功能作用,有助于下调其基础活性、底物的结合以及细胞转化所需辅助途径的诱导。最后,获得的结果与Vav的一种新调节模型一致,其中钙调蛋白同源区域通过与锌指区域的相互作用抑制Vav的基础活性。

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