Marei Hadir, Carpy Alejandro, Woroniuk Anna, Vennin Claire, White Gavin, Timpson Paul, Macek Boris, Malliri Angeliki
Cell Signalling Group, Cancer Research UK Manchester Institute, The University of Manchester, Manchester M204BX, UK.
Proteome Center Tuebingen, Interfaculty Institute for Cell Biology, University of Tuebingen, Tuebingen 72026, Germany.
Nat Commun. 2016 Feb 18;7:10664. doi: 10.1038/ncomms10664.
The small GTPase Rac1 has been implicated in the formation and dissemination of tumours. Upon activation by guanine nucleotide exchange factors (GEFs), Rac1 associates with a variety of proteins in the cell thereby regulating various functions, including cell migration. However, activation of Rac1 can lead to opposing migratory phenotypes raising the possibility of exacerbating tumour progression when targeting Rac1 in a clinical setting. This calls for the identification of factors that influence Rac1-driven cell motility. Here we show that Tiam1 and P-Rex1, two Rac GEFs, promote Rac1 anti- and pro-migratory signalling cascades, respectively, through regulating the Rac1 interactome. In particular, we demonstrate that P-Rex1 stimulates migration through enhancing the interaction between Rac1 and the actin-remodelling protein flightless-1 homologue, to modulate cell contraction in a RhoA-ROCK-independent manner.
小GTP酶Rac1与肿瘤的形成和扩散有关。在鸟嘌呤核苷酸交换因子(GEFs)激活后,Rac1与细胞中的多种蛋白质结合,从而调节包括细胞迁移在内的各种功能。然而,Rac1的激活可导致相反的迁移表型,这增加了在临床环境中靶向Rac1时加剧肿瘤进展的可能性。这就需要识别影响Rac1驱动的细胞运动的因素。在这里,我们表明,两种Rac GEF,即Tiam1和P-Rex1,分别通过调节Rac1相互作用组来促进Rac1的抗迁移和促迁移信号级联反应。特别是,我们证明P-Rex1通过增强Rac1与肌动蛋白重塑蛋白无翅型同源物之间的相互作用来刺激迁移,以一种不依赖RhoA-ROCK的方式调节细胞收缩。