首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Constitutive Dimerization of Glycoprotein VI (GPVI) in Resting Platelets Is Essential for Binding to Collagen and Activation in Flowing Blood
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Constitutive Dimerization of Glycoprotein VI (GPVI) in Resting Platelets Is Essential for Binding to Collagen and Activation in Flowing Blood

机译:糖蛋白VI(GPVI)在静止血小板中的组成型二聚化对于结合胶原蛋白和流动血液中的激活至关重要

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摘要

The platelet collagen receptor glycoprotein VI (GPVI) has been suggested to function as a dimer, with increased affinity for collagen. Dissociation constants (Kd) obtained by measuring recombinant GPVI binding to collagenous substrates showed that GPVI dimers bind with high affinity to tandem GPO (Gly-Pro-Hyp) sequences in collagen, whereas the markedly lower affinity of the monomer for all substrates implies that it is not the collagen-binding form of GPVI. Dimer binding required a high density of immobilized triple-helical (GPO)10-containing peptide, suggesting that the dimer binds multiple, discrete peptide helices. Differential inhibition of dimer binding by dimer-specific antibodies, m-Fab-F and 204-11 Fab, suggests that m-Fab-F binds at the collagen-binding site of the dimer, and 204-11 Fab binds to a discrete site. Flow cytometric quantitation indicated that GPVI dimers account for ∼29% of total GPVI in resting platelets, whereas activation by either collagen-related peptide or thrombin increases the number of dimers to ∼39 and ∼44%, respectively. m-Fab-F inhibits both GPVI-dependent static platelet adhesion to collagen and thrombus formation on collagen under low and high shear, indicating that pre-existing dimeric GPVI is required for the initial interaction with collagen because affinity of the monomer is too low to support binding and that interaction through the dimer is essential for platelet activation. These GPVI dimers in resting circulating platelets will enable them to bind injury-exposed subendothelial collagen to initiate platelet activation. The GPVI-specific agonist collagen-related peptide or thrombin further increases the number of dimers, thereby providing a feedback mechanism for reinforcing binding to collagen and platelet activation.
机译:已经建议血小板胶原蛋白受体糖蛋白VI(GPVI)可以作为二聚体,对胶原蛋白的亲和力增加。通过测量重组GPVI与胶原底物的结合获得的解离常数(Kd)表明,GPVI二聚体与胶原中的串联GPO(Gly-Pro-Hyp)序列具有高亲和力,而单体对所有底物的亲和力明显较低,这意味着不是GPVI的胶原结合形式。二聚体结合需要高密度的固定的含三螺旋(GPO)10的肽,这表明二聚体结合了多个离散的肽螺旋。二聚体特异性抗体m-Fab-F和204-11 Fab对二聚体结合的差异抑制表明,m-Fab-F在二聚体的胶原结合位点结合,而204-11 Fab与离散位点结合。流式细胞仪定量分析表明,GPVI二聚体约占静息血小板总GPVI的29%,而胶原相关肽或凝血酶的激活将二聚体的数量分别增至约39%和44%。 m-Fab-F抑制GPVI依赖的静态血小板粘附于胶原蛋白和在低和高剪切下胶原蛋白上的血栓形成,表明与胶原蛋白的初始相互作用需要预先存在的二聚体GPVI,因为单体的亲和力太低以至于支持结合,并且通过二聚体的相互作用对于血小板活化至关重要。这些静息循环的血小板中的GPVI二聚体将使它们能够结合暴露于损伤的内皮下胶原蛋白来启动血小板活化。 GPVI特异性激动剂胶原蛋白相关肽或凝血酶进一步增加了二聚体的数量,从而提供了一种增强与胶原蛋白结合和血小板活化的反馈机制。

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