Za Lorena, Albertinazzi Chiara, Paris Simona, Gagliani Mariacristina, Tacchetti Carlo, de Curtis Ivan
Cell Adhesion Unit, Department of Molecular Biology and Functional Genomics, San Raffaele Scientific Institute, Via Olgettina 58, 20132 Milano, Italy.
J Cell Sci. 2006 Jul 1;119(Pt 13):2654-66. doi: 10.1242/jcs.02996.
Cell motility entails the reorganization of the cytoskeleton and membrane trafficking for effective protrusion. GIT1/p95-APP1 is a member of a family of GTPase-activating proteins for ARF GTPases that affect endocytosis, adhesion and migration. GIT1 associates with paxillin and a complex including the Rac/Cdc42 exchanging factors PIX/Cool and the kinase PAK. In this study, we show that overexpression of betaPIX induces the accumulation of endogenous and overexpressed GIT1 at large structures similar to those induced by an ArfGAP-defective mutant of GIT1 (p95-C2). Immunohistochemical analysis and immunoelectron microscopy reveal that these structures include the endogenous transferrin receptor. Time-lapse analysis during motogenic stimuli shows that the formation and perinuclear accumulation of the p95-C2-positive structures is paralleled by inhibition of lamellipodium formation and cell retraction. Both dimerization and a functional SH3 domain of betaPIX are required for the accumulation of GIT1 in fibroblasts, which is prevented by the monomeric PIX-PG-DeltaLZ. This mutant also prevents the formation of endocytic aggregates and inhibition of neurite outgrowth in retinal neurons expressing p95-C2. Our results indicate that betaPIX is an important regulator of the subcellular distribution of GIT1, and suggest that alteration in the level of expression of the complex affects the endocytic compartment and cell motility.
细胞运动需要细胞骨架的重组和膜运输以实现有效的突出。GIT1/p95-APP1是ARF GTP酶的GTP酶激活蛋白家族的成员,该家族影响内吞作用、黏附和迁移。GIT1与桩蛋白以及一个包括Rac/Cdc42交换因子PIX/Cool和激酶PAK的复合物相关联。在本研究中,我们表明βPIX的过表达诱导内源性和过表达的GIT1在与由GIT1的ArfGAP缺陷突变体(p95-C2)诱导的结构相似的大型结构上积累。免疫组织化学分析和免疫电子显微镜显示这些结构包括内源性转铁蛋白受体。在促运动刺激期间的延时分析表明,p95-C2阳性结构的形成和核周积累与片状伪足形成的抑制和细胞回缩同时发生。βPIX的二聚化和功能性SH3结构域对于成纤维细胞中GIT1的积累都是必需的,这被单体PIX-PG-DeltaLZ所阻止。该突变体还可防止表达p95-C2的视网膜神经元中内吞聚集体的形成和神经突生长的抑制。我们的结果表明βPIX是GIT1亚细胞分布的重要调节因子,并表明该复合物表达水平的改变会影响内吞区室和细胞运动。