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Kinetics of GPIbα-vWF-A1 Tether Bond under Flow: Effect of GPIbα Mutations on the Association and Dissociation Rates

机译:流下GPIbα-vWF-A1束缚键的动力学:GPIbα突变对缔合和解离速率的影响

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摘要

The interaction between platelet glycoprotein (GP) Ib-IX-V complex and von Willebrand factor (vWF) is the first step of the hemostatic response to vessel injury. In platelet-type von Willebrand disease, two mutations, G233V and M239V, have been described within the Cys209-Cys248 disulfide loop of GPIbα that compromise hemostasis by increasing the affinity for vWF. We have earlier shown that converting other residues in this region to valine alters the affinity of GPIbα for vWF, with mutations K237V and Q232V, respectively, showing the greatest increase and decrease in affinity. Here, we investigated further the effect of these two mutations on the kinetics of the GPIbα interaction with the vWF-A1 domain under dynamic flow conditions. We measured the cellular on- and off-rate constants of Chinese hamster ovary cells expressing GPIb-IX complexes containing wild-type or mutant GPIbα interacting with vWF-A1-coated surfaces at different shear stresses. We found that the gain-of-function mutant, K237V, rolled very slowly and continuously on vWF-A1 surface while the loss-of-function mutant, Q232V, showed fast, saltatory movement compared to the wild-type (WT). The off-rate constants, calculated based on the analysis of lifetimes of transient tethers formed on surfaces coated with limiting densities of vWF-A1, revealed that the Q232V and K237V dissociated 1.25-fold faster and 2.2-fold slower than the WT. The cellular on-rate constant of WT, measured in terms of tethering frequency, was threefold more and threefold less than Q232V and K237V, respectively. Thus, the gain- and loss-of-function mutations in GPIbα affect both the association and dissociation kinetics of the GPIbα-vWF-A1 bond. These findings are in contrast to the functionally similar selectin bonds where some of the mutations have been reported to affect only the dissociation rate.
机译:血小板糖蛋白(GP)Ib-IX-V复合物与von Willebrand因子(vWF)之间的相互作用是血管损伤止血反应的第一步。在血小板型von Willebrand病中,GPIbα的Cys 209 -Cys 248 二硫键环内描述了两个突变G233V和M239V,这些突变通过增加亲和力而影响止血对于vWF。较早的研究表明,将该区域中的其他残基转化为缬氨酸会改变GPIbα对vWF的亲和力,突变分别为K237V和Q232V,显示亲和力的最大增加和减少。在这里,我们进一步研究了这两个突变对动态流动条件下GPIbα与vWF-A1域相互作用的动力学的影响。我们测量了表达GPIb-IX复合物的中国仓鼠卵巢细胞的细胞通断速率常数。GPIb-IX复合物包含在不同剪切应力下与vWF-A1涂层表面相互作用的野生型或突变型GPIbα。我们发现,功能获得性突变体K237V在vWF-A1表面上滚动非常缓慢且连续,而功能丧失型突变体Q232V与野生型(WT)相比显示出快速的盐碱运动。根据对涂有vWF-A1极限密度的表面上形成的瞬态系链的寿命进行分析得出的失速常数显示,Q232V和K237V的解离速度比WT快1.25倍和慢2.2倍。以束缚频率衡量,WT的细胞导通速率常数分别比Q232V和K237V高三倍和三倍。因此,GPIbα中功能的获得和丧失功能突变会影响GPIbα-vWF-A1键的缔合和解离动力学。这些发现与功能相似的选择蛋白键相反,在功能相似的选择蛋白键中,据报道某些突变仅影响解离速率。

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