Korobko I V, Shepelev M V
Institute of Gene Biology, Russian Аcademy of Sciences, Moscow, 119334 Russia.
Mol Biol (Mosk). 2018 Jul-Aug;52(4):692-698. doi: 10.1134/S0026898418040092.
Atypical RhoV GTPase (Chp/Wrch-2) is a member of the human Rho GTPase family, which belongs to the superfamily of Ras-related small GTPases. The biological functions of RhoV, regulation of its activity, and mechanisms of its action remain largely unexplored. Rho GTPases regulate a wide range of cellular processes by interacting with protein targets called effectors. Several putative RhoV effectors have been identified, including protein kinases of the Pak (p21-activated kinase) family: Pak1, Pak2, Pak4, and Pak6. RhoV GTPase activates Pak1 protein kinase and simultaneously induces its ubiquitin-dependent degradation. Pak1 regulates E-cadherin localization at adherens junctions downstream of RhoV during gastrulation in fish. The effector domain of RhoV mediates its binding to the CRIB (Cdc42/Rac1 interactive binding) motif in the N-terminal p21-binding domain (PBD) of Pak6 protein kinase. The role of the RhoV effector domain in mediating interaction with Pak1 has not been studied. This study has identified mutations in the effector domain of RhoV GTPase (Y60K, T63A, L65A, and D66A) that impair its interaction with Pak1 in the GST-PAK-PBD pull-down assay and coimmunoprecipitation. Our results suggest that the effector domain of RhoV mediates its binding to Pak1, complementing the current view of the molecular basics of RhoV binding to effectors of the Pak family. These data lay the basis for further studies on the role of Pak1 in RhoV-activated signaling pathways and cellular processes.
非典型RhoV GTP酶(Chp/Wrch-2)是人类Rho GTP酶家族的成员,该家族属于Ras相关小GTP酶超家族。RhoV的生物学功能、其活性的调节及其作用机制在很大程度上仍未得到充分研究。Rho GTP酶通过与称为效应器的蛋白质靶点相互作用来调节广泛的细胞过程。已经鉴定出几种假定的RhoV效应器,包括Pak(p21激活激酶)家族的蛋白激酶:Pak1、Pak2、Pak4和Pak6。RhoV GTP酶激活Pak1蛋白激酶并同时诱导其泛素依赖性降解。在鱼类原肠胚形成过程中,Pak1调节RhoV下游黏附连接处的E-钙黏蛋白定位。RhoV的效应器结构域介导其与Pak6蛋白激酶N端p21结合结构域(PBD)中的CRIB(Cdc42/Rac1相互作用结合)基序的结合。RhoV效应器结构域在介导与Pak1相互作用中的作用尚未得到研究。本研究在RhoV GTP酶的效应器结构域中鉴定出突变(Y60K、T63A、L65A和D66A),这些突变在GST-PAK-PBD下拉实验和共免疫沉淀中损害了其与Pak1的相互作用。我们的结果表明,RhoV的效应器结构域介导其与Pak1的结合,补充了目前关于RhoV与Pak家族效应器结合的分子基础的观点。这些数据为进一步研究Pak1在RhoV激活的信号通路和细胞过程中的作用奠定了基础。