血小板反应蛋白-1抑制抗中性粒细胞细胞质抗体相关血管炎的替代补体途径激活。

Swagata Konwar,Sophie Schroda,Manuel Rogg,Jessika Kleindienst,Eva L Decker,Martin Pohl,Barbara Zieger,Jens Peter Panse,Hong Wang,Robert Grosse,Christoph Schell,Sabine Vidal,Xiaobo Liu,Christian Gorzelanny,Todor Tschongov,Karsten Häffner
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引用次数: 0

摘要

补体激活在血管炎的病理机制中是一个相关的驱动因素。在这些情况下,内皮、补体和血小板之间相互作用所涉及的蛋白质只是部分了解。血小板反应蛋白-1 (TSP-1)存在于血小板α-颗粒中,从活化的内皮细胞中释放,与H因子(FH)和血管性血液病因子(vWF)相互作用。然而,与补体级联的直接调节相互作用尚未被描述。我们可以证明TSP-1是一种有效的,不依赖于fh的替代补体途径抑制剂。TSP-1与补体蛋白结合,抑制C3和C5的切割和膜攻击复合物的形成。补体调节功能在原发性补体缺陷患者的血液样本中得到验证。在体外和体内AAV模型中,通过肾小球病变中TSP-1染色显著增强,补体活性和NETosis增加,证明了anca相关性血管炎(AAV)患者中TSP-1的生理相关性。新发现的TSP-1的补体抑制功能是内皮细胞与补体相互作用的重要机制。特别是,释放的TSP-1与补体系统局部,特别是表面的相互作用,影响补体激活和抑制之间的平衡,并可能与各种血管疾病有关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thrombospondin-1 inhibits alternative complement pathway activation in antineutrophil cytoplasmic antibody-associated vasculitis.
Complement activation is a relevant driver in the pathomechanisms of vasculitis. The involved proteins in the interaction between endothelia, complement and platelets in these conditions are only partially understood. Thrombospondin-1 (TSP-1), found in platelet α-granules and released from activated endothelial cells, interacts with factor H (FH) and von Willebrand factor (vWF). However, direct regulatory interaction with the complement cascade has not yet been described. We could show that TSP-1 is a potent, FH-independent inhibitor of the alternative complement pathway. TSP-1 binds to complement proteins, inhibits cleavage of C3 and C5 and the formation of the membrane attack complex. Complement-regulatory function is validated in blood samples from patients with primary complement defects. Physiological relevance of TSP-1 is demonstrated in ANCA-associated vasculitis (AAV) patients by significantly enhanced TSP-1 staining in glomerular lesions and increased complement activity and NETosis following TSP-1 deficiency in an in vitro and in vivo model of AAV. The newly described complement-inhibiting function of TSP-1 represents an important mechanism in the interaction of endothelia and complement. In particular, the interplay between released TSP-1 and the complement system locally, especially on surfaces, influences the balance between complement activation and inhibition and may be relevant in various vascular diseases.
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