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由Rho家族GTP酶Chp触发的Pak1自磷酸化依赖性降解

Autophosphorylation-dependent degradation of Pak1, triggered by the Rho-family GTPase, Chp.

作者信息

Weisz Hubsman Monika, Volinsky Natalia, Manser Edward, Yablonski Deborah, Aronheim Ami

机构信息

Department of Molecular Genetics, The Rappaport Family Institute for Research in the Medical Sciences, Technion-Israel Institute of Technology, 1 Efron St. Bat-Galim, Haifa 31096, Israel.

出版信息

Biochem J. 2007 Jun 15;404(3):487-97. doi: 10.1042/BJ20061696.

Abstract

The Paks (p21-activated kinases) Pak1, Pak2 and Pak3 are among the most studied effectors of the Rho-family GTPases, Rac, Cdc42 (cell division cycle 42) and Chp (Cdc42 homologous protein). Pak kinases influence a variety of cellular functions, but the process of Pak down-regulation, following activation, is poorly understood. In the present study, we describe for the first time a negative-inhibitory loop generated by the small Rho-GTPases Cdc42 and Chp, resulting in Pak1 inhibition. Upon overexpression of Chp, we unexpectedly observed a T-cell migration phenotype consistent with Paks inhibition. In line with this observation, overexpression of either Chp or Cdc42 caused a marked reduction in the level of Pak1 protein in a number of different cell lines. Chp-induced degradation was accompanied by ubiquitination of Pak1, and was dependent on the proteasome. The susceptibility of Pak1 to Chp-induced degradation depended on its p21-binding domain, kinase activity and a number of Pak1 autophosphorylation sites, whereas the PIX- (Pak-interacting exchange factor) and Nck-binding sites were not required. Together, these results implicate Chp-induced kinase autophosphorylation in the degradation of Pak1. The N-terminal domain of Chp was found to be required for Chp-induced degradation, although not for Pak1 activation, suggesting that Chp provides a second function, distinct from kinase activation, to trigger Pak degradation. Collectively, our results demonstrate a novel mechanism of signal termination mediated by the Rho-family GTPases Chp and Cdc42, which results in ubiquitin-mediated degradation of one of their direct effectors, Pak1.

摘要

p21激活激酶(Paks)中的Pak1、Pak2和Pak3是Rho家族GTP酶、Rac、Cdc42(细胞分裂周期蛋白42)和Chp(Cdc42同源蛋白)中研究最多的效应器。Pak激酶影响多种细胞功能,但激活后Pak下调的过程却知之甚少。在本研究中,我们首次描述了由小Rho - GTP酶Cdc42和Chp产生的负抑制环,导致Pak1受到抑制。Chp过表达时,我们意外观察到与Paks抑制一致的T细胞迁移表型。与此观察结果一致,Chp或Cdc42的过表达导致多种不同细胞系中Pak1蛋白水平显著降低。Chp诱导的降解伴随着Pak1的泛素化,且依赖于蛋白酶体。Pak1对Chp诱导降解的敏感性取决于其p21结合结构域、激酶活性和多个Pak1自身磷酸化位点,而不需要PIX(Pak相互作用交换因子)和Nck结合位点。总之,这些结果表明Chp诱导的激酶自身磷酸化参与了Pak1的降解。发现Chp的N端结构域是Chp诱导降解所必需的,尽管不是Pak1激活所必需的,这表明Chp提供了一种不同于激酶激活的第二功能来触发Pak降解。我们的结果共同证明了一种由Rho家族GTP酶Chp和Cdc42介导的信号终止新机制,该机制导致其直接效应器之一Pak1的泛素介导降解。

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