首页> 美国卫生研究院文献>Biophysical Journal >Selectin-like kinetics and biomechanics promote rapid platelet adhesion in flow: the GPIb(alpha)-vWF tether bond.
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Selectin-like kinetics and biomechanics promote rapid platelet adhesion in flow: the GPIb(alpha)-vWF tether bond.

机译:类选择素动力学和生物力学促进血小板快速流动:GPIbα-vWF系链键。

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摘要

The ability of platelets to tether to and translocate on injured vascular endothelium relies on the interaction between the platelet glycoprotein receptor Ib alpha (GPIb(alpha)) and the A1 domain of von Willebrand factor (vWF-A1). To date, limited information exists on the kinetics that govern platelet interactions with vWF in hemodynamic flow. We now report that the GPIb(alpha)-vWF-A1 tether bond displays similar kinetic attributes as the selectins including: 1) the requirement for a critical level of hydrodynamic flow to initiate adhesion, 2) short-lived tethering events at sites of vascular injury in vivo, and 3) a fast intrinsic dissociation rate constant, k(0)(off) (3.45 +/- 0.37 s(-1)). Values for k(off), as determined by pause time analysis of transient capture/release events, were also found to vary exponentially (4.2 +/- 0.8 s(-1) to 7.3 +/- 0.4 s(-1)) as a function of the force applied to the bond (from 36 to 217 pN). The biological importance of rapid bond dissociation in platelet adhesion is demonstrated by kinetic characterization of the A1 domain mutation, I546V that is associated with type 2B von Willebrand disease (vWD), a bleeding disorder that is due to the spontaneous binding of plasma vWF to circulating platelets. This mutation resulted in a loss of the shear threshold phenomenon, a approximately sixfold reduction in k(off), but no significant alteration in the ability of the tether bond to resist shear-induced forces. Thus, flow dependent adhesion and rapid and force-dependent kinetic properties are the predominant features of the GPIb(alpha)-vWF-A1 tether bond that in part may explain the preferential binding of platelets to vWF at sites of vascular injury, the lack of spontaneous platelet aggregation in circulating blood, and a mechanism to limit thrombus formation.
机译:血小板束缚和转移到受损血管内皮上的能力取决于血小板糖蛋白受体Ibα(GPIbα)和von Willebrand因子(vWF-A1)A1域之间的相互作用。迄今为止,关于在血流动力学中控制血小板与vWF相互作用的动力学的信息有限。我们现在报告,GPIbα-vWF-A1系链键显示与选择素相似的动力学属性,包括:1)临界水平的水动力流以启动粘附,2)血管部位的短暂系链事件3)快速内在解离速率常数k(0)(off)(3.45 +/- 0.37 s(-1))。通过瞬时捕获/释放事件的暂停时间分析确定的k(off)值也随指数变化(4.2 +/- 0.8 s(-1)到7.3 +/- 0.4 s(-1))施加到键上的力的函数(从36到217 pN)。快速键解离在血小板粘附中的生物学重要性通过A1域突变I546V的动力学表征得以证明,该I546V与2B型von Willebrand病(vWD)有关,这是一种由于血浆vWF自发结合于血液而引起的出血性疾病血小板。这种突变导致剪切阈值现象的损失,k(off)大约减少了六倍,但系链键抵抗剪切力的能力没有明显变化。因此,GPIbα-vWF-A1系链键的主要特征是流量依赖性粘附,快速和力依赖性动力学特性,这在一定程度上可以解释在血管损伤部位血小板与vWF的优先结合。循环血液中的自发性血小板聚集,以及限制血栓形成的机制。

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