Evangelista Virgilio, Pamuklar Zehra, Piccoli Antonio, Manarini Stefano, Dell'elba Giuseppe, Pecce Romina, Martelli Nicola, Federico Lorenzo, Rojas Mauricio, Berton Giorgio, Lowell Clifford A, Totani Licia, Smyth Susan S
Laboratory of Vascular Biology and Pharmacology, Consorzio Mario Negri Sud, Via Nazionale 8/A, 66030 Santa Maria Imbaro, Italy.
Blood. 2007 Mar 15;109(6):2461-9. doi: 10.1182/blood-2006-06-029082. Epub 2006 Nov 9.
Polymorphonuclear leukocyte (PMN)-platelet interactions at sites of vascular damage contribute to local and systemic inflammation. We sought to determine the role of "outside-in" signaling by Src-family tyrosine kinases (SFKs) in the regulation of alphaMbeta2-integrin-dependent PMN recruitment by activated platelets under (patho)physiologic conditions. Activation-dependent epitopes in beta2 integrin were exposed at the contact sites between PMNs and platelets and were abolished by SFK inhibitors. PMNs from alphaMbeta2(-/-), hck(-/-)fgr(-/-), and hck(-/-)fgr(-/-)lyn(-/-) mice had an impaired capacity to adhere with activated platelets in suspension. Phosphorylation of Pyk2 accompanied PMN adhesion to platelets and was blocked by inhibition as well as by genetic deletion of alphaMbeta2 integrin and SFKs. A Pyk2 inhibitor reduced platelet-PMN adhesion, indicating that Pyk2 may be a downstream effector of SFKs. Analysis of PMN-platelet interactions under flow revealed that SFK signaling was required for alphaMbeta2-mediated shear-resistant adhesion of PMNs to adherent platelets, but was dispensable for P-selectin-PSGL-1-mediated recruitment and rolling. Finally, SFK activity was required to support PMN accumulation along adherent platelets at the site of vascular injury, in vivo. These results definitely establish a role for SFKs in PMN recruitment by activated platelets and suggest novel targets to disrupt the pathophysiologic consequences of platelet-leukocyte interactions in vascular disease.
血管损伤部位的多形核白细胞(PMN)与血小板的相互作用会导致局部和全身炎症。我们试图确定Src家族酪氨酸激酶(SFK)的“外向内”信号在(病理)生理条件下对活化血小板调节αMβ2整合素依赖性PMN募集的作用。β2整合素中依赖激活的表位在PMN与血小板的接触部位暴露,并被SFK抑制剂消除。来自αMβ2(-/-)、hck(-/-)fgr(-/-)和hck(-/-)fgr(-/-)lyn(-/-)小鼠的PMN在悬浮液中与活化血小板粘附的能力受损。Pyk2的磷酸化伴随着PMN与血小板的粘附,并被αMβ2整合素和SFK的抑制以及基因缺失所阻断。一种Pyk2抑制剂降低了血小板与PMN的粘附,表明Pyk2可能是SFK的下游效应器。对流动条件下PMN与血小板相互作用的分析表明,SFK信号是αMβ2介导的PMN与粘附血小板的抗剪切粘附所必需的,但对于P-选择素-PSGL-1介导的募集和滚动则是可有可无的。最后,在体内,血管损伤部位需要SFK活性来支持PMN沿着粘附的血小板积聚。这些结果明确确立了SFK在活化血小板募集PMN中的作用,并提示了破坏血管疾病中血小板-白细胞相互作用病理生理后果的新靶点。