首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Destabilization of the A1 Domain in von Willebrand Factor Dissociates the A1A2A3 Tri-domain and Provokes Spontaneous Binding to Glycoprotein Ibα and Platelet Activation under Shear Stress
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Destabilization of the A1 Domain in von Willebrand Factor Dissociates the A1A2A3 Tri-domain and Provokes Spontaneous Binding to Glycoprotein Ibα and Platelet Activation under Shear Stress

机译:von Willebrand因子中A1结构域的不稳定使A1A2A3三结构域解离并引起在剪切应力下自发结合糖蛋白Ibα和血小板活化。

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摘要

This study used recombinant A1A2A3 tri-domain proteins to demonstrate that A domain association in von Willebrand factor (VWF) regulates the binding to platelet glycoprotein Ibα (GPIbα). We performed comparative studies between wild type (WT) A1 domain and the R1450E variant that dissociates the tri-domain complex by destabilizing the A1 domain. Using urea denaturation and differential scanning calorimetry, we demonstrated the destabilization of the A1 domain structure concomitantly results in a reduced interaction among the three A domains. This dissociation results in spontaneous binding of R1450E to GPIbα without ristocetin with an apparent KD of 85 ± 34 nm, comparable with that of WT (36 ± 12 nm) with ristocetin. The mutant blocked 100% ristocetin-induced platelet agglutination, whereas WT failed to inhibit. The mutant enhanced shear-induced platelet aggregation at 500 and 5000 s−1 shear rates, reaching 42 and 66%, respectively. Shear-induced platelet aggregation did not exceed 18% in the presence of WT. A1A2A3 variants were added before perfusion over a fibrin(ogen)-coated surface. At 1500 s−1, platelets from blood containing WT adhered <10% of the surface area, whereas the mutant induced platelets to rapidly bind, covering 100% of the fibrin(ogen) surface area. Comparable results were obtained with multimeric VWF when ristocetin (0.5 mg/ml) was added to blood before perfusion. EDTA or antibodies against GPIbα and αIIbβ3 blocked the effect of the mutant and ristocetin on platelet activation/adhesion. Therefore, the termination of A domain association within VWF in solution results in binding to GPIba and platelet activation under high shear stress.
机译:这项研究使用重组A1A2A3三结构域蛋白来证明von Willebrand因子(VWF)中的A结构域缔合调节与血小板糖蛋白Ibα(GPIbα)的结合。我们进行了野生型(WT)A1域和R1450E变体之间的比较研究,该变体通过破坏A1域的稳定性来解离三结构域复合体。使用尿素变性和差示扫描量热法,我们证明了A1域结构的不稳定同时导致三个A域之间的相互作用减少。这种解离导致R1450E与不带有瑞斯托菌素的GPIbα自发结合,其表观KD为85±34 nm,与带有瑞斯托菌素的WT(36±12 nm)相当。该突变体阻止了100%瑞斯托霉素诱导的血小板凝集,而WT未能抑制。该突变体在500和5000 s -1 剪切速率下增强了剪切诱导的血小板聚集,分别达到42%和66%。在WT存在下,剪切诱导的血小板聚集不超过18%。在灌注到纤维蛋白(原)包被的表面上之前,先添加A1A2A3变体。在1500 s -1 ,含WT的血液中的血小板粘附了<10%的表面积,而突变体诱导的血小板迅速结合,覆盖了100%的纤维蛋白(原)表面积。当在灌注前向血液中添加瑞斯托菌素(0.5 mg / ml)时,使用多聚体VWF可获得可比的结果。 EDTA或抗GPIbα和αIIbβ3的抗体阻断了突变体和瑞斯托菌素对血小板活化/粘附的作用。因此,在溶液中VWF内的A结构域缔合的终止导致与GPIba的结合和在高剪切应力下的血小板活化。

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