Patrussi Laura, Ulivieri Cristina, Lucherini Orso Maria, Paccani Silvia Rossi, Gamberucci Alessandra, Lanfrancone Luisa, Pelicci Pier Giuseppe, Baldari Cosima T
Departments of Evolutionary Biology, European Institute of Oncology, Milan, Italy.
Blood. 2007 Sep 15;110(6):1730-8. doi: 10.1182/blood-2007-01-068411. Epub 2007 May 30.
ShcA is an important mediator of Ras/MAPK activation in PTK-regulated pathways triggered by surface receptors. This function is subserved by the constitutively expressed p52-kDa isoform. Besides activating Ras, p52Shc couples the TCR to Rho GTPases, and thereby participates in actin cytoskeleton remodeling in T cells. Here we have addressed the potential involvement of p52Shc in T-cell chemotaxis and the role of the phosphorylatable tyrosine residues, YY239/240 and Y317, in this process. We show that CXCR4 engagement by the homeostatic chemokine, SDF-1alpha, results in p52Shc phosphorylation and its assembly into a complex that includes Lck, ZAP-70, and Vav. This process was found to be both Lck and Gi dependent. Expression of p52Shc mutants lacking YY239/240 or Y317, or p52Shc deficiency, resulted in a profound impairment in CXCR4 signaling and SDF-1alpha-dependent chemotaxis, underscoring a crucial role of p52Shc as an early component of the CXCR4 signaling cascade. p52Shc was also found to be required for ligand-dependent CXCR4 internalization independently of tyrosine phosphorylation. Remarkably, CXCR4 engagement promoted phosphorylation of the zeta chain of the TCR/CD3 complex, which was found to be essential for CXCR4 signaling, as well as for SDF-1alpha-dependent receptor endocytosis and chemotaxis, indicating that CXCR4 signals by transactivating the TCR.
ShcA是由表面受体触发的PTK调节途径中Ras/MAPK激活的重要介质。该功能由组成型表达的52-kDa异构体承担。除了激活Ras,p52Shc还将TCR与Rho GTP酶偶联,从而参与T细胞中的肌动蛋白细胞骨架重塑。在这里,我们探讨了p52Shc在T细胞趋化性中的潜在作用以及可磷酸化酪氨酸残基YY239/240和Y317在此过程中的作用。我们发现,稳态趋化因子SDF-1α与CXCR4结合会导致p52Shc磷酸化并组装成一个包含Lck、ZAP-70和Vav的复合物。发现该过程依赖于Lck和Gi。缺乏YY239/240或Y317的p52Shc突变体的表达或p52Shc缺陷导致CXCR4信号传导和SDF-1α依赖性趋化性严重受损,强调了p52Shc作为CXCR4信号级联早期成分的关键作用。还发现p52Shc是配体依赖性CXCR4内化所必需的,与酪氨酸磷酸化无关。值得注意的是,CXCR4结合促进了TCR/CD3复合物ζ链的磷酸化,这被发现对CXCR4信号传导以及SDF-1α依赖性受体内吞作用和趋化性至关重要,表明CXCR4通过反式激活TCR发出信号。