Centre for Haematology, Imperial College London, London, UK.
Centre for Biomolecular Sciences, School of Pharmacy, University of Nottingham, Nottingham, UK.
Nat Commun. 2019 Aug 22;10(1):3781. doi: 10.1038/s41467-019-11474-5.
Platelet recruitment to sites of blood vessel damage is highly dependent upon von Willebrand factor (VWF). VWF platelet-tethering function is proteolytically regulated by the metalloprotease ADAMTS13. Proteolysis depends upon shear-induced conformational changes in VWF that reveal the A2 domain cleavage site. Multiple ADAMTS13 exosite interactions are involved in recognition of the unfolded A2 domain. Here we report through kinetic analyses that, in binding VWF, the ADAMTS13 cysteine-rich and spacer domain exosites bring enzyme and substrate into proximity. Thereafter, binding of the ADAMTS13 disintegrin-like domain exosite to VWF allosterically activates the adjacent metalloprotease domain to facilitate proteolysis. The crystal structure of the ADAMTS13 metalloprotease to spacer domains reveals that the metalloprotease domain exhibits a latent conformation in which the active-site cleft is occluded supporting the requirement for an allosteric change to enable accommodation of the substrate. Our data demonstrate that VWF functions as both the activating cofactor and substrate for ADAMTS13.
血小板在血管损伤部位的募集高度依赖于血管性血友病因子(VWF)。VWF 血小板拴系功能受金属蛋白酶 ADAMTS13 的蛋白水解调节。蛋白水解依赖于 VWF 的剪切诱导构象变化,从而揭示 A2 结构域的切割位点。多个 ADAMTS13 外显子相互作用参与识别展开的 A2 结构域。在这里,我们通过动力学分析报告说,在结合 VWF 时,ADAMTS13 富含半胱氨酸和间隔区外显子将酶和底物拉近。此后,ADAMTS13 解整合素样结构域外显子与 VWF 的结合变构激活相邻的金属蛋白酶结构域,以促进蛋白水解。ADAMTS13 金属蛋白酶到间隔区的晶体结构表明,金属蛋白酶结构域呈现出一种潜伏构象,其中活性位点裂缝被封闭,这支持了需要变构改变以适应底物的要求。我们的数据表明,VWF 既是 ADAMTS13 的激活辅因子,也是其底物。