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Promotion of binding of von Willebrand factor to platelet glycoprotein Ib by dimers of ristocetin

机译:瑞斯托霉素二聚体促进血管性血友病因子与血小板糖蛋白Ib结合

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pIn the absence of high shear forces, the iin vitro/i binding of human von Willebrand factor (vWF) to its platelet receptor glycoprotein Ib (GPIb) can be promoted by two well-characterized mediators, botrocetin and ristocetin. Using purified vWF and GPIb, we have investigated the mechanisms by which ristocetin mediates this binding. Specific binding of vWF monomers to GPIb occurred with a 1:1 stoichiometry, but high-affinity binding required the participation of two ristocetin dimers. Binding was strongly dependent on pH and inhibited by low poly-L-lysine concentrations, indicating ristocetin-dependent charge neutralization during the interaction. With increasing ristocetin concentrations, vWF binding depended progressively less on the involvement of its A1 loop, which is compatible with a model in which the two ristocetin dimers bridge the vWF-GPIb complex on secondary sites. In agreement with this model, the ristocetin-dimer-promoted stabilization of vWF on GPIb was abolished by low concentrations of poly(Pro-Gly-Pro), which is known to complex ristocetin dimers. Mechanistic analysis of the inhibition of vWF binding by the recombinant vWF fragment Leu504-Ser728 (VCL), which covers the entire A1 loop, revealed an affinity of VCL for GPIb comparable with that of the botrocetin-vWF complex for GPIb, and identified a specific but 20-fold lower affinity of VCL in the presence of ristocetin. The proline-rich peptides flanking the vWF A1 loop, Cys474-Val489 and Leu694-Asp709, inhibited vWF binding semispecifically by competitively interfering with the formation of the GPIb-vWF complex rather than by complexation of free ristocetin dimers. In conclusion, ristocetin-promoted binding of vWF to its GPIb receptor results from charge neutralization and interactions involving proline residues in the vicinity of the natural interaction sites present on both GPIb and the A1 domain of vWF./p
机译:>在没有高剪切力的情况下,人血管性血友病因子(vWF)与血小板受体糖蛋白Ib(GPIb)的体外结合可通过两种特征明确的介质Botrocetin促进和ristocetin。使用纯化的vWF和GPIb,我们研究了瑞斯托菌素介导这种结合的机制。 vWF单体与GPIb的特异性结合以1:1的化学计量比发生,但高亲和力结合需要两个ristocetin二聚体的参与。结合强烈依赖于pH值,并受到低聚-L-赖氨酸浓度的抑制,表明相互作用过程中瑞斯托霉素依赖性电荷中和。随着瑞斯托霉素浓度的增加,vWF结合逐渐不再依赖于其A1环的参与,该环与模型相关,在该模型中,两个瑞斯托汀二聚体在次要位点上连接了vWF-GPIb复合物。与该模型一致,低浓度的聚(Pro-Gly-Pro)(复杂的瑞斯托素二聚体已知)消除了佛瑞汀-二聚体促进的vWF在GPIb上的稳定。覆盖整个A1环的重组vWF片段Leu504-Ser728(VCL)抑制vWF结合的机理分析显示,VCL对GPIb的亲和力与Botrocetin-vWF复合物对GPIb的亲和力相当,并确定了特异性但是在瑞斯托霉素存在下,VCL的亲和力降低了20倍。 vWF A1环两侧的富含脯氨酸的肽Cys474-Val489和Leu694-Asp709通过竞争性干扰GPIb-vWF复合物的形成而不是通过游离香豆素二聚体的复合来半特异性地抑制vWF结合。总之,ristoristin促进vWF与其GPIb受体的结合是由于电荷中和以及涉及在GPIb和vWF的A1域上都存在的天然相互作用位点附近脯氨酸残基的相互作用所致。

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