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von Willebrand factor interaction with subendothelial collagens and platelet surface receptor GPIBalpha under shear conditions.

机译:在剪切条件下,von Willebrand因子与内皮下胶原和血小板表面受体GPIBalpha相互作用。

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The molecular mechanisms of binding interaction among von Willebrand factor, subendothelium and platelets under physiological shear conditions are important medically in hemostasis and thrombosis. By binding both subendothelial collagens and platelet surface receptors GPIbα, multimeric vWf acts as a bridge between subendothelium and circulating platelets.; In this study, the molecular binding between vWf multimers and human pepsin-digested collagen I, III and VI was characterized using Surface Plasmon Resonance (BIAcore). Compared to binding to pepsin-digested collagen III surfaces, normal vWf multimers (nvWf) bound to human pepsin-digested collagen I with a 5-fold lower binding capacity and a 10-fold higher equilibrium dissociation constant. There was no detectable binding between the vWf multimers and human pepsin-digested collagen VI. vWf preparations enriched in either relatively small vWf (svWf) multimers or in unusually large vWf u1vWf multimers were also studied on collagen III surfaces. Our results demonstrate vWf-collagen binding, which involves multi-step processes, is dependent on vWf molecular mass and the duration of interactions.; To study the shear-induced vWf interaction with GPIbα, the isolated extracellular domain of GPIbα, glycocalicin, was covalently immobilized to carboxylate-modified polystyrene beads. These glycocalicin-coated beads had the ability to bind vWf in the presence of ristocetin, botrocetin or high shear conditions. To evaluate shear stress effects on the interaction between vWf and GPIbα, we compared shear-induced vWf binding to glycocalicin-coated beads, Chinese hamster ovary cells expressing the wild type and mutant GPIb-IX complex, and washed human platelets. Compared to binding in the presence of botrocetin and ristocetin, shear stress induces only low-level nvWf binding, whereas shear stress can induce significant ulvWf binding. Our studies demonstrate that the GPIbα extracellular domain is necessary and sufficient for interaction with soluble vWf under shear stress.; The vWf A1 domain binding to glycocalicin, as well as the botrocetin and ristocetin-induced nvWf binding, were also characterized by using Surface Plasmon Resonance. The results indicate that although the intrinsic binding affinity of vWf and glycocalicin is very weak, botrocetin can increase this affinity dramatically. Compared to botrocetin, ristocetin-induced binding is a highly reversible process with low binding affinity.
机译:在生理剪切条件下,von Willebrand因子,内皮下层和血小板之间的结合相互作用的分子机制在止血和血栓形成方面具有重要的医学意义。通过结合内皮下胶原和血小板表面受体GPIbα,多聚体vWf充当内皮下和循环血小板之间的桥梁。在这项研究中,使用表面等离振子共振(BIAcore)表征了vWf多聚体与人胃蛋白酶消化的胶原I,III和VI之间的分子结合。与结合胃蛋白酶消化的胶原蛋白III表面相比,正常的vWf多聚体(nvWf)与人胃蛋白酶消化的胶原蛋白I的结合能力低5倍,平衡解离常数高10倍。 vWf多聚体与人胃蛋白酶消化的胶原VI之间没有可检测的结合。还研究了胶原蛋白III表面上富含相对较小的vWf(svWf)多聚​​体或异常大的vWf u1vWf多聚体的vWf制剂。我们的结果表明,vWf-胶原蛋白结合涉及多个步骤,取决于vWf分子质量和相互作用的持续时间。为了研究剪切诱导的与GPIbα的vWf相互作用,将GPIbα的分离的胞外域糖钙素共价固定在羧酸修饰的聚苯乙烯珠上。这些糖钙调蛋白包被的珠粒在瑞斯托霉素,Botrocetin或高剪切条件下具有结合vWf的能力。为了评估剪切应力对vWf与GPIbα相互作用的影响,我们比较了剪切诱导的vWf与糖钙蛋白包被的磁珠,表达野生型和突变GPIb-IX复合物的中国仓鼠卵巢细胞,以及洗涤的人血小板。与存在botrocetin和ristocetin的结合相比,剪切应力仅诱导低水平的nvWf结合,而剪切应力可诱导显着的ulvWf结合。我们的研究表明,GPIbα胞外域对于在剪切应力下与可溶性vWf相互作用是必要和充分的。还通过使用表面等离振子共振表征了与糖钙霉素结合的vWf A1结构域,以及由Botrocetin和ristocetin诱导的nvWf结合。结果表明,尽管vWf和糖钙调素的内在结合亲和力很弱,但是Botrocetin可以显着增加这种亲和力。与Botrocetin相比,ristocetin诱导的结合是一种高度可逆的过程,具有较低的结合亲和力。

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