Jacquemet Guillaume, Humphries Martin J
Wellcome Trust Centre for Cell-Matrix Research; Faculty of Life Sciences; University of Manchester; Manchester, UK.
Small GTPases. 2013 Oct-Dec;4(4):199-207. doi: 10.4161/sgtp.27451. Epub 2013 Dec 19.
Coordination of the activity of multiple small GTPases is required for the regulation of many physiological processes, including cell migration. There are now several examples of functional interplay between small GTPase pairs, but the mechanisms that control GTPase activity in time and space are only partially understood. Here, we build on the hypothesis that small GTPases are part of a large, integrated network and propose that key proteins within this network integrate multiple signaling events and coordinate multiple small GTPase activities. Specifically, we identify the scaffolding protein IQGAP1 as a master regulator of multiple small GTPases, including Cdc42, Rac1, Rap1, and RhoA. In addition, we demonstrate that IQGAP1 promotes Arf6 activation downstream of β1 integrin engagement. Furthermore, following literature-curated searches and recent mass spectrometric analysis of IQGAP1-binding partners, we report that IQGAP1 recruits other small GTPases, including RhoC, Rac2, M-Ras, RhoQ, Rab10, and Rab5, small GTPase regulators, including Tiam1, RacGAP1, srGAP2 and HERC1, and small GTPase effectors, including PAK6, N-WASP, several sub-units of the Arp2/3 complex and the formin mDia1. Therefore, we propose that IQGAP1 acts as a small GTPase scaffolding platform within the small GTPase network, and recruits and/or regulates small GTPases, small GTPase regulators and effectors to orchestrate cell behavior. Finally, to identify other putative key regulators of small GTPase crosstalk, we have assembled a small GTPase network using protein-protein interaction databases.
多种小GTP酶活性的协调对于包括细胞迁移在内的许多生理过程的调节是必需的。现在有几个小GTP酶对之间功能相互作用的例子,但在时间和空间上控制GTP酶活性的机制仅得到部分理解。在这里,我们基于小GTP酶是一个大型整合网络的一部分这一假设,并提出该网络中的关键蛋白整合多个信号事件并协调多种小GTP酶的活性。具体而言,我们确定支架蛋白IQGAP1是多种小GTP酶的主要调节因子,包括Cdc42、Rac1、Rap1和RhoA。此外,我们证明IQGAP1在β1整合素结合下游促进Arf6激活。此外,在对IQGAP1结合伙伴进行文献筛选和最近的质谱分析后,我们报告IQGAP1招募其他小GTP酶,包括RhoC、Rac2、M-Ras、RhoQ、Rab10和Rab5,小GTP酶调节因子,包括Tiam1、RacGAP1、srGAP2和HERC1,以及小GTP酶效应器,包括PAK6、N-WASP、Arp2/3复合物的几个亚基和成纤维细胞生长因子mDia1。因此,我们提出IQGAP1作为小GTP酶网络内的一个小GTP酶支架平台,并招募和/或调节小GTP酶、小GTP酶调节因子和效应器以协调细胞行为。最后,为了识别小GTP酶串扰的其他假定关键调节因子,我们使用蛋白质-蛋白质相互作用数据库组装了一个小GTP酶网络。