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首页> 外文期刊>Thrombosis Research: An International Journal on Vascular Obstruction, Hemorrhage and Hemostasis >Effect of multimerization of human and recombinant von Willebrand factor on platelet aggregation, binding to collagen and binding of coagulation factor VIII.
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Effect of multimerization of human and recombinant von Willebrand factor on platelet aggregation, binding to collagen and binding of coagulation factor VIII.

机译:人和重组von Willebrand因子的多聚化对血小板聚集,胶原蛋白结合和凝血因子VIII结合的影响。

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摘要

The smallest circulating von Willebrand factor (vWF) molecule is a dimer composed of two identical subunits containing binding sites for heparin, collagen, platelet glycoproteins and coagulation factor VIII (FVIII). Interdimeric disulfide linking leads to multimers composed of up to 40 dimers. vWF serves as a carrier of FVIII and is required for normal interactions of platelets with the subendothelium of the injured vessel wall. Von Willebrand factor was purified from human plasma cryoprecipitate and fermentation supernatant of recombinant CHO cells by anion exchange chromatography. Heparin affinity chromatography was used to isolate vWF polymers of different degree of multimerization. Analysis of collagen binding and platelet aggregation revealed that these activities increase with increasing degree of multimerization of vWF. Binding of FVIII to vWF was studied by real-time biospecific interaction analysis and surface plasmon technology. The binding data showed that the binding of FVIII is independentof vWF multimerization. Using recombinant FVIII and recombinant vWF, real-time biospecific interaction analysis resulted in a potential stoichiometry of 2 to 2.5 vWF-subunits per bound FVIII molecule. The kinetic analysis of the vWF-FVIII interaction resulted in a binding rate constant of about 3 x 10(6) M-1 s-1 and an equilibrium dissociation constant of about 0.4 x 10(-9) M.
机译:最小的循环性von Willebrand因子(vWF)分子是由两个相同的亚基组成的二聚体,其中两个亚基包含肝素,胶原蛋白,血小板糖蛋白和凝血因子VIII(FVIII)的结合位点。二聚体间二硫键连接导致由多达40个二聚体组成的多聚体。 vWF充当FVIII的载体,是血小板与受损血管壁的内皮下层正常相互作用所必需的。通过阴离子交换色谱法从人血浆冷沉淀和重组CHO细胞的发酵上清液中纯化Von Willebrand因子。肝素亲和层析用于分离不同多聚度的vWF聚合物。胶原蛋白结合和血小板聚集的分析表明,这些活性随vWF的多聚度增加而增加。通过实时生物特异性相互作用分析和表面等离子体技术研究了FVIII与vWF的结合。结合数据表明FVIII的结合不依赖于vWF多聚。使用重组FVIII和重组vWF,实时生物特异性相互作用分析导致每个结合的FVIII分子2到2.5个vWF亚基的潜在化学计量。 vWF-FVIII相互作用的动力学分析导致​​约3 x 10(6)M-1 s-1的结合速率常数和约0.4 x 10(-9)M的平衡解离常数。

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