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首页> 外文期刊>Thrombosis and Haemostasis: Journal of the International Society on Thrombosis and Haemostasis >Recombinant vWF type 2A mutants R834Q and R834W show a defect in mediating platelet adhesion to collagen, independent of enhanced sensitivity to a plasma protease.
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Recombinant vWF type 2A mutants R834Q and R834W show a defect in mediating platelet adhesion to collagen, independent of enhanced sensitivity to a plasma protease.

机译:重组vWF 2A型突变体R834Q和R834W在介导血小板与胶原蛋白的粘附方面表现出缺陷,而与对血浆蛋白酶的敏感性增强无关。

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摘要

Type 2A von Willebrand Disease (vWD) is characterized by the absence of high molecular weight von Willebrand factor (VWF) multimers in plasma which is caused by enhanced extracellular proteolysis or defective intracellular transport. We identified in vWD type 2A patients two mutations in the A2 domain at position 834 in which arginine (R) was substituted for glutamine (R834Q) or tryptophan (R834W). We reproduced these mutations in vWF cDNA and expressed the recombinant proteins in furin cDNA containing baby hamster kidney (fur-BHK) cells. The subunit composition and the multimeric structure of both mutants was similar to wild-type (WT) vWF. Characterization of mutant R834Q by ristocetin or botrocetin induced platelet binding, and by binding to heparin showed no abnormality. R834W had normal botrocetin induced platelet binding, but ristocetin induced platelet binding and binding to heparin were decreased. Under static conditions R834Q and R834W, at 10 microg/ml, bound equally well to collagen type III as WT-vWF. At high shear rate conditions both mutants supported platelet adhesion normally when coated to a glass surface or preincubated on collagen. When R834Q or R834W was added to the perfusate, adhesion to collagen type III was 50% of the WT-vWF value, which was not due to a decreased collagen binding under flow. A divalent cation dependent protease, purified from plasma, degraded the 2A mutants rapidly while WT-vWF was not affected. In conclusion, the mutations present in the A2 domain of vWF result in an enhanced proteolytic sensitivity to a divalent ion-dependent protease. When present in the perfusate, R834Q and R834W show a decrease in platelet adhesion to collagen type III under flow conditions, which is not caused by decreased binding of the mutant vWF to collagen or enhanced proteolysis.
机译:2A型von Willebrand病(vWD)的特征是血浆中不存在高分子量的von Willebrand因子(VWF)多聚体,这是由细胞外蛋白水解增强或细胞内运输缺陷引起的。我们在vWD 2A型患者中在位置834的A2域中发现了两个突变,其中精氨酸(R)替代了谷氨酰胺(R834Q)或色氨酸(R834W)。我们在vWF cDNA中复制了这些突变,并在含有小仓鼠肾(fur-BHK)细胞的弗林蛋白酶cDNA中表达了重组蛋白。两个突变体的亚基组成和多聚体结构与野生型(WT)vWF相似。 ristocetin或botrocetin诱导的血小板结合以及与肝素结合的突变体R834Q的特征未显示异常。 R834W具有正常的Botrocetin诱导的血小板结合作用,但ristocetin诱导的血小板结合作用和与肝素的结合作用降低。在静态条件下,浓度为10微克/毫升的R834Q和R834W与WT-vWF的III型胶原蛋白结合良好。在高剪切速率条件下,当将两种突变体包被到玻璃表面或在胶原蛋白上预孵育时,它们通常都支持血小板粘附。当向灌注液中添加R834Q或R834W时,其对III型胶原的粘附力为WT-vWF值的50%,这不是由于流动状态下胶原结合力降低所致。从血浆中纯化的二价阳离子依赖性蛋白酶可快速降解2A突变体,而WT-vWF则不受影响。总之,vWF A2结构域中存在的突变导致对二价离子依赖性蛋白酶的蛋白水解敏感性增强。当存在于灌注液中时,R834Q和R834W在流动条件下血小板与III型胶原的粘附性降低,这不是由突变体vWF与胶原的结合减少或蛋白水解增强引起的。

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