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Structural and Energetic Mechanisms of Cooperative Autoinhibition and Activation of Vav1

机译:协同自动抑制和激活Vav1的结构和能量机制。

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摘要

Vav proteins are guanine nucleotide exchange factors (GEFs) for Rho family GTPases. They control processes including T cell activation, phagocytosis, and migration of normal and transformed cells. We report the structure and biophysical and cellular analyses of the five-domain autoinhibitory element of Vav1. The catalytic Dbl homology (DH) domain of Vav1 is controlled by two energetically coupled processes. The DH active site is directly, but weakly, inhibited by a helix from the adjacent Acidic domain. This core interaction is strengthened 10-fold by contacts of the calponin homology (CH) domain with the Acidic, pleckstrin homology, and DH domains. This construction enables efficient, step-wise relief of autoinhibition: initial phosphorylation events disrupt the modulatory CH contacts, facilitating phosphorylation of the inhibitory helix and consequent GEF activation. Our findings illustrate how the opposing requirements of strong suppression of activity and rapid kinetics of activation can be achieved in multidomain systems.
机译:Vav蛋白是Rho家族GTPases的鸟嘌呤核苷酸交换因子(GEF)。它们控制过程,包括T细胞活化,吞噬作用以及正常细胞和转化细胞的迁移。我们报告的结构和生物物理和细胞分析的Vav1的五域自动抑制元件。 Vav1的催化Dbl同源性(DH)域由两个能量耦合过程控制。 DH活性位点被相邻酸性域的螺旋直接但微弱地抑制。钙联蛋白同源性(CH)域与酸性,普列克司汀同源性和DH域的接触使这种核心相互作用增强了10倍。这种构造能够有效,逐步地缓解自身抑制作用:初始的磷酸化事件破坏了调节性CH接触,促进了抑制性螺旋的磷酸化,进而促进了GEF的活化。我们的发现说明了如何在多域系统中实现强烈抑制活性和快速激活动力学的相反要求。

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