血小板
化学
纤维蛋白原
凝结
血管性血友病因子
糖蛋白Ib
血小板膜糖蛋白
糖蛋白
血小板粘附
粘附
血小板活化
细胞生物学
血栓
P-选择素
受体
血小板糖蛋白GPIIb-iia复合物
瑞斯托西汀
生物物理学
体外
整合素
分子生物学
血浆蛋白结合
血小板因子4
生物化学
细胞粘附
血块回缩
结合位点
免疫学
膜糖蛋白
内科学
作者
Rida Malik,Ji Zhou,Miguel A.D. Neves,Rex Huang,Xinyi Guo,Rawaa Hussain,James Charles Fredenburgh,Peter L Gross,Heyu Ni,Colin A. Kretz,J.I. Weitz
出处
期刊:Blood
[Elsevier BV]
日期:2026-06-03
标识
DOI:10.1182/blood.2026033144
摘要
Histidine-rich glycoprotein (HRG) is a 75-kDa plasma protein produced by the liver and circulating at about 2 µM, with an additional pool in platelets that is released upon activation. Previously, we demonstrated that HRG downregulates the contact system by binding polyanions and reducing their capacity to activate factor (F) XII. Although HRG localizes on the platelet surface, its role in platelet biology remains uncertain. Accordingly, we investigated whether HRG directly engages platelet receptors to regulate adhesion and aggregation. Using human and murine platelets, we show that HRG (a) binds to glycoprotein (GP)Ibα on resting and activated platelets and to GPIIb/IIIa on activated platelets, (b) competes with von Willebrand factor (VWF) for binding to GPIbα on resting platelets and with fibrinogen for binding to GPIIb/IIIa on activated platelets, and (c) attenuates platelet agglutination, aggregation, and platelet-mediated thrombus growth. Furthermore, in an endothelial-platelet flow system or a collagen-coated microperfusion chamber, HRG reduced VWF-mediated platelet string formation and attenuated platelet deposition under high-shear conditions. Plasma HRG levels in patients with sepsis or COVID-19 were about half those of healthy controls, and reducing HRG to these levels in vitro promoted a hyperreactive platelet phenotype. Therefore, HRG not only modulates coagulation but also platelet adhesion and aggregation by competing with VWF and fibrinogen for binding to GPIbα and GPIIb/IIIa.
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