Nishio Kenji, Anderson Patricia J, Zheng X Long, Sadler J Evan
Howard Hughes Medical Institute and Department of Medicine, Washington University School of Medicine, St. Louis, MO 63110, USA.
Proc Natl Acad Sci U S A. 2004 Jul 20;101(29):10578-83. doi: 10.1073/pnas.0402041101. Epub 2004 Jul 12.
von Willebrand factor (vWF) is a multimeric plasma glycoprotein with three tandem A domains. Domains A1 and A3 bind to platelet glycoprotein Ibalpha (GPIbalpha) and collagen, respectively. Domain A2 contains the Tyr-1605-Met-1606 bond that is cleaved by the metalloprotease ADAMTS13, and this reaction inhibits platelet thrombus growth. Fluid shear stress increases the rate of cleavage, suggesting that productive interaction with ADAMTS13 requires conformational changes within or near domain A2. The influence of the adjacent A1 and A3 domains was assessed by mutagenesis of a recombinant substrate consisting of domains A1A2A3. Deletion of domain A3 did not affect cleavage by ADAMTS13, whereas deletion of domain A1 increased the rate of cleavage approximately 10-fold. Similar effects were observed with plasma ADAMTS13 and recombinant ADAMTS13 truncated after the spacer domain. Digestion of A1A2A3 by plasma ADAMTS13 was enhanced to a similar extent by a recombinant mutant fragment of platelet GPIbalpha that binds with high affinity to domain A1 or by heparin. Heparin also increased the digestion of purified plasma vWF. Neither GPIbalpha nor heparin increased the cleavage of substrate A2A3 that lacks domain A1. The results suggest that vWF domain A1 inhibits the cleavage of domain A2, and that inhibition can be relieved by interaction of domain A1 with platelet GPIbalpha or certain glycosaminoglycans. Thus, binding of vWF to its major physiological ligands may promote the feedback inhibition of platelet adhesion by stimulating the cleavage of domain A2 by ADAMTS13 independent of fluid shear stress.
血管性血友病因子(vWF)是一种具有三个串联A结构域的多聚体血浆糖蛋白。A1和A3结构域分别与血小板糖蛋白Ibalpha(GPIbalpha)和胶原蛋白结合。A2结构域包含被金属蛋白酶ADAMTS13切割的Tyr-1605-Met-1606键,该反应抑制血小板血栓的生长。流体剪切应力会增加切割速率,这表明与ADAMTS13的有效相互作用需要A2结构域内或其附近的构象变化。通过对由A1A2A3结构域组成的重组底物进行诱变,评估了相邻A1和A3结构域的影响。缺失A3结构域不影响ADAMTS13的切割,而缺失A1结构域则使切割速率增加约10倍。在间隔结构域后截短的血浆ADAMTS13和重组ADAMTS13中也观察到了类似的效果。与A1结构域高亲和力结合的血小板GPIbalpha重组突变片段或肝素可将血浆ADAMTS13对A1A2A3的消化增强到类似程度。肝素还增加了纯化血浆vWF的消化。GPIbalpha和肝素均未增加缺乏A1结构域的底物A2A3的切割。结果表明,vWF的A1结构域抑制A2结构域的切割,并且通过A1结构域与血小板GPIbalpha或某些糖胺聚糖的相互作用可以解除这种抑制。因此,vWF与其主要生理配体的结合可能通过刺激ADAMTS13对A2结构域的切割来促进对血小板黏附的反馈抑制,而与流体剪切应力无关。