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致癌性Dbl、Cdc42和p21激活激酶通过最小相互作用结构域形成三元信号中间体。

Oncogenic Dbl, Cdc42, and p21-activated kinase form a ternary signaling intermediate through the minimum interactive domains.

作者信息

Wang Lei, Zhu Kejin, Zheng Yi

机构信息

Division of Experimental Hematology, Children's Hospital Research Foundation, Graduate Program of Molecular Developmental Biology, University of Cincinnati, Cincinnati, Ohio 45229, USA.

出版信息

Biochemistry. 2004 Nov 23;43(46):14584-93. doi: 10.1021/bi048574u.

Abstract

Activation of many Rho family GTPase pathways involves the signaling module consisting of the Dbl-like guanine nucleotide exchange factors (GEFs), the Rho GTPases, and the Rho GTPase specific effectors. The current biochemical model postulates that the GEF-stimulated GDP/GTP exchange of Rho GTPases leads to the active Rho-GTP species, and subsequently the active Rho GTPases interact with and activate the effectors. Here we report an unexpected finding that the Dbl oncoprotein, Cdc42 GTPase, and PAK1 can form a complex through their minimum functional motifs, i.e., the Dbl-homolgy (DH) and Pleckstrin-homology domains of Dbl, Cdc42, and the PBD domain of PAK1. The Dbl-Cdc42-PAK1 complex is sensitive to the nucleotide-binding state of Cdc42 since either dominant negative or constitutively active Cdc42 readily disrupts the ternary binding interaction. The complex formation depends on the interactions between the DH domain of Dbl and Cdc42 and between Cdc42 and the PBD domain of PAK1 and can be reconstituted in vitro by using the purified components. Furthermore, the Dbl-Cdc42-PAK1 ternary complex is active in generating signaling output through the activated PAK1 kinase in the complex. The GEF-Rho-effector ternary intermediate is also found in other Dbl-like GEF, Rho GTPase, and effector interactions. Finally, PAK1, through the PDB domain, is able to accelerate the GEF-induced GTP loading onto Cdc42. These results suggest that signal transduction through Cdc42 and possibly other Rho family GTPases could involve tightly coupled guanine nucleotide exchange and effector activation mechanisms and that Rho GTPase effector may have a feedback regulatory role in the Rho GTPase activation.

摘要

许多Rho家族GTP酶信号通路的激活涉及由Dbl样鸟嘌呤核苷酸交换因子(GEFs)、Rho GTP酶和Rho GTP酶特异性效应器组成的信号模块。当前的生化模型假定,GEF刺激的Rho GTP酶的GDP/GTP交换导致活性Rho-GTP物种的产生,随后活性Rho GTP酶与效应器相互作用并激活效应器。在此,我们报告了一个意外发现,即Dbl癌蛋白、Cdc42 GTP酶和PAK1可通过其最小功能基序形成复合物,即Dbl、Cdc42的Dbl同源(DH)和普列克底物蛋白同源结构域以及PAK1的PBD结构域。Dbl-Cdc42-PAK1复合物对Cdc42的核苷酸结合状态敏感,因为显性负性或组成型活性Cdc42都容易破坏三元结合相互作用。复合物的形成取决于Dbl的DH结构域与Cdc42之间以及Cdc42与PAK1的PBD结构域之间的相互作用,并且可以通过使用纯化的组分在体外进行重构。此外,Dbl-Cdc42-PAK1三元复合物通过复合物中激活的PAK1激酶产生信号输出具有活性。在其他Dbl样GEF、Rho GTP酶和效应器相互作用中也发现了GEF-Rho-效应器三元中间体。最后,PAK1通过PDB结构域能够加速GEF诱导的GTP加载到Cdc42上。这些结果表明,通过Cdc42以及可能通过其他Rho家族GTP酶进行的信号转导可能涉及紧密耦合的鸟嘌呤核苷酸交换和效应器激活机制,并且Rho GTP酶效应器可能在Rho GTP酶激活中具有反馈调节作用。

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