首页> 外文期刊>Journal of thrombosis and haemostasis: JTH >Platelet collagen receptor Glycoprotein VI-dimer recognizes fibrinogen and fibrin through their D-domains, contributing to platelet adhesion and activation during thrombus formation
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Platelet collagen receptor Glycoprotein VI-dimer recognizes fibrinogen and fibrin through their D-domains, contributing to platelet adhesion and activation during thrombus formation

机译:血小板胶原受体糖蛋白VI-二聚体通过其D域识别纤维蛋白原和纤维蛋白,促成血栓形成期间的血小板粘附和活化

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Background: Platelet collagen receptor Glycoprotein VI (GPVI) binds collagen, initiating thrombogenesis, and stabilizes thrombi by binding fibrin. Objectives: To determine if GPVI-dimer, GPVI-monomer, or both bind to fibrinogen substrates, and which region common to these substrates contains the interaction site. Methods: Recombinant GPVI monomeric extracellular domain (GPVI(ex)) or dimeric Fc-fusion protein (GPVI-Fc(2)) binding to immobilized fibrinogen derivatives was measured by ELISA, including competition assays involving collagenous substrates and fibrinogen derivatives. Flow adhesion was performed with normal or Glanzmann thrombasthenic (GT) platelets over immobilized fibrinogen, with or without anti-GPVI-dimer or anti-alpha IIbb3. Results: Under static conditions, GPVI(ex) did not bind to any fibrinogen substrate. GPVI-Fc(2) exhibited specific, saturable binding to both D-fragment and D-dimer, which was inhibited by mFab-F (anti-GPVI-dimer), but showed low binding to fibrinogen and fibrin under our conditions. GPVI-Fc(2) binding to D-fragment or D-dimer was abrogated by collagen type III, Horm collagen or CRP-XL (crosslinked collagen-related peptide), suggesting proximity between the D-domain and collagen binding sites on GPVI-dimer. Under low shear, adhesion of normal platelets to D-fragment, D-dimer, fibrinogen and fibrin was inhibited by mFab-F (inhibitor of GPVI-dimer) and abolished by Eptifibatide (inhibitor of alpha IIbb3), suggesting that both receptors contribute to thrombus formation on these substrates, but alpha IIbb3 makes a greater contribution. Notably, thrombasthenic platelets showed limited adhesion to fibrinogen substrates under flow, which was further reduced by mFab-F, supporting some independent GPVI-dimer involvement in this interaction. Conclusion: Only dimeric GPVI interacts with fibrinogen D-domain, at a site proximate to its collagen binding site, to support platelet adhesion/activation/aggregate formation on immobilized fibrinogen and polymerized fibrin.
机译:背景:血小板胶原受体糖蛋白VI(GPVI)结合胶原,引发血栓发生,并通过结合纤维蛋白稳定血栓。目的:确定GPVI二聚体,GPVI - 单体,或两者均与纤维蛋白原底物结合,以及这些底物共用的区域含有相互作用位点。方法:通过ELISA测量重组GPVI单体细胞结构域(GPVI(ex))或二聚体Fc-融合蛋白(GPVI-Fc(2))与固定化纤维蛋白原衍生物的结合,包括涉及胶原基质和纤维蛋白原衍生物的竞争测定。用正常的或甘蓝蛋白血栓活性(GT)血小板在固定化纤维蛋白原上进行流动粘附,有或没有抗GPVI-二聚体或抗αIIBB3。结果:在静态条件下,GPVI(ex)没有与任何纤维蛋白原基质结合。 GPVI-Fc(2)表现出与D-碎片和D-二聚体的特异性可饱和的结合,其被MFAB-F(抗GPVI二聚体)抑制,但在我们的条件下表现出与纤维蛋白原和纤维蛋白的低结合。通过胶原III,霍尔胶原蛋白或CRP-XL(交联的胶原相关肽)废除与D-片段或D-二聚体结合的GPVI-Fc(2)结合,表明在GPVI上的D域和胶原蛋白结合位点之间的接近二聚体。在低剪切下,MFAB-F(GPVI二聚体抑制剂)抑制正常血小板,D-二聚体,纤维蛋白原和纤维蛋白的粘附性,并由ePTifibatide(αIIBB3的抑制剂)废除,表明两个受体有助于在这些基材上形成血栓形成,但αIIBB3具有更大的贡献。值得注意的是,血栓活性血小板显示出对流动的纤维蛋白原底物有限的粘附性,其通过MFAB-F进一步减少,支持一些独立的GPVI二聚体参与该相互作用。结论:只有二聚体GPVI与纤维蛋白原D-结构域相互作用,在其胶原蛋白结合位点围绕其胶原蛋白酶结合位点,以支持固定化纤维蛋白原和聚合纤维蛋白的血小板粘附/活化/聚集体。

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