Ruder Bošković Institute, Division of Molecular Biology, Bijenička 54, HR-10000 Zagreb, Croatia.
J Cell Sci. 2012 Jan 15;125(Pt 2):387-98. doi: 10.1242/jcs.089680. Epub 2012 Feb 2.
Rac proteins are the only canonical Rho family GTPases in Dictyostelium, where they act as key regulators of the actin cytoskeleton. To monitor the dynamics of activated Rac1 in Dictyostelium cells, a fluorescent probe was developed that specifically binds to the GTP-bound form of Rac1. The probe is based on the GTPase-binding domain (GBD) from PAK1 kinase, and was selected on the basis of yeast two-hybrid, GST pull-down and fluorescence resonance energy transfer assays. The PAK1 GBD localizes to leading edges of migrating cells and to endocytotic cups. Similarly to its role in vertebrates, activated Rac1 therefore appears to control de novo actin polymerization at protruding regions of the Dictyostelium cell. Additionally, we found that the IQGAP-related protein DGAP1, which sequesters active Rac1 into a quaternary complex with actin-binding proteins cortexillin I and cortexillin II, localizes to the trailing regions of migrating cells. Notably, PAK1 GBD and DGAP1, which both bind to Rac1-GTP, display mutually exclusive localizations in cell migration, phagocytosis and cytokinesis, and opposite dynamics of recruitment to the cell cortex upon stimulation with chemoattractants. Moreover, cortical localization of the PAK1 GBD depends on the integrity of the actin cytoskeleton, whereas cortical localization of DGAP1 does not. Taken together, these results imply that Rac1 GTPases play a dual role in regulation of cell motility and polarity in Dictyostelium.
Rac 蛋白是狄氏剂中唯一的经典 Rho 家族 GTPases,它们作为肌动蛋白细胞骨架的关键调节剂。为了监测狄氏剂细胞中激活的 Rac1 的动态,开发了一种荧光探针,该探针特异性结合 Rac1 的 GTP 结合形式。该探针基于 PAK1 激酶的 GTPase 结合结构域(GBD),并基于酵母双杂交、GST 下拉和荧光共振能量转移测定法进行了选择。PAK1 GBD 定位于迁移细胞的前缘和内吞小窝。与在脊椎动物中的作用类似,激活的 Rac1 因此似乎控制了狄氏剂细胞突出区域的新肌动蛋白聚合。此外,我们发现与 IQGAP 相关的蛋白 DGAP1 将活性 Rac1 隔离在与肌动蛋白结合蛋白皮层蛋白 I 和皮层蛋白 II 形成的四元复合物中,定位于迁移细胞的后缘。值得注意的是,与 Rac1-GTP 结合的 PAK1 GBD 和 DGAP1 在细胞迁移、吞噬作用和胞质分裂中表现出相互排斥的定位,并且在受到趋化剂刺激时招募到细胞皮质的动力学相反。此外,PAK1 GBD 的皮质定位取决于肌动蛋白细胞骨架的完整性,而 DGAP1 的皮质定位则不依赖于肌动蛋白细胞骨架。总之,这些结果表明 Rac1 GTPases 在狄氏剂中调节细胞运动性和极性方面发挥双重作用。