Matsuura Shinobu, Mi Rongjuan, Koupenova Milka, Eliades Alexia, Patterson Shenia, Toselli Paul, Thon Jonathan, Italiano Joseph E, Trackman Philip C, Papadantonakis Nikolaos, Ravid Katya
Department of Medicine and Whitaker Cardiovascular Institute and.
Department of Biochemistry, Boston University School of Medicine, Boston, MA;
Blood. 2016 Mar 17;127(11):1493-501. doi: 10.1182/blood-2015-02-629667. Epub 2016 Jan 11.
Lysyl oxidase (LOX) is overexpressed in various pathologies associated with thrombosis, such as arterial stenosis and myeloproliferative neoplasms (MPNs). LOX is elevated in the megakaryocytic lineage of mouse models of MPNs and in patients with MPNs. To gain insight into the role of LOX in thrombosis and platelet function without compounding the influences of other pathologies, transgenic mice expressing LOX in wild-type megakaryocytes and platelets (Pf4-Lox(tg/tg)) were generated. Pf4-Lox(tg/tg) mice had a normal number of platelets; however, time to vessel occlusion after endothelial injury was significantly shorter in Pf4-Lox(tg/tg) mice, indicating a higher propensity for thrombus formation in vivo. Exploring underlying mechanisms, we found that Pf4-Lox(tg/tg) platelets adhere better to collagen and have greater aggregation response to lower doses of collagen compared with controls. Platelet activation in response to the ligand for collagen receptor glycoprotein VI (cross-linked collagen-related peptide) was unaffected. However, the higher affinity of Pf4-Lox(tg/tg) platelets to the collagen sequence GFOGER implies that the collagen receptor integrin α2β1 is affected by LOX. Taken together, our findings demonstrate that LOX enhances platelet activation and thrombosis.
赖氨酰氧化酶(LOX)在与血栓形成相关的各种病理状态中过度表达,如动脉狭窄和骨髓增殖性肿瘤(MPN)。在MPN小鼠模型的巨核细胞谱系以及MPN患者中,LOX水平升高。为了深入了解LOX在血栓形成和血小板功能中的作用,同时避免其他病理状态的影响,我们构建了在野生型巨核细胞和血小板中表达LOX的转基因小鼠(Pf4-Lox(tg/tg))。Pf4-Lox(tg/tg)小鼠的血小板数量正常;然而,Pf4-Lox(tg/tg)小鼠在内皮损伤后血管闭塞的时间明显缩短,这表明其体内血栓形成的倾向更高。在探究潜在机制时,我们发现与对照组相比,Pf4-Lox(tg/tg)血小板对胶原蛋白的黏附性更好,对较低剂量胶原蛋白的聚集反应更强。对胶原蛋白受体糖蛋白VI的配体(交联胶原相关肽)的反应所引起的血小板激活不受影响。然而,Pf4-Lox(tg/tg)血小板对胶原蛋白序列GFOGER的更高亲和力表明,胶原蛋白受体整合素α2β1受LOX影响。综上所述,我们的研究结果表明,LOX增强血小板激活和血栓形成。