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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >A novel binding site for ADAMTS13 constitutively exposed on the surface of globular VWF.
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A novel binding site for ADAMTS13 constitutively exposed on the surface of globular VWF.

机译:一个新的结合位点ADAMTS13组成性暴露在球状VWF的表面上。

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摘要

ADAMTS13 metalloprotease regulates the multimeric size of von Willebrand factor (VWF) by cleaving the Tyr1605-Met1606 bond in the VWF A2 domain. The mechanisms of VWF recognition by ADAMTS13 have yet to be fully resolved. Most studies have focused on the role of exosites within the VWF A2 domain, involved in interaction with the ADAMTS13 spacer domain. In the present study, we expressed different C-terminal domain VWF fragments and evaluated their binding to ADAMTS13 and its truncated mutants, MDTCS and del(TSP5-CUB). Using plate binding assay and surface plasmon resonance, we identified a novel ADAMTS13 binding site (K(D) approximately 86 nM) in the region of VWF spanning residues 1874 to 2813, which includes the VWF D4 domain and that interacts with the C-terminal domains of ADAMTS13. We show that the interaction occurs even when VWF is in static conditions, assumed to be globular and where the VWF A2 domain is hidden. We demonstrate that C-terminal VWF fragments, as well as an antibody specifically directed toward the VWF D4 domain, inhibit VWF proteolysis by ADAMTS13 under shear conditions. We propose that this novel VWF C-terminal binding site may participate as the initial step of a multistep interaction ultimately leading to proteolysis of VWF by ADAMTS13.
机译:ADAMTS13金属蛋白酶通过切割VWF A2结构域中的Tyr1605-Met1606键来调节von Willebrand因子(VWF)的多聚体大小。 ADAMTS13识别VWF的机制尚未完全解决。大多数研究都集中在外来分子在VWF A2域内的作用中,该域参与与ADAMTS13间隔域的相互作用。在本研究中,我们表达了不同的C末端域VWF片段,并评估了它们与ADAMTS13及其截短的突变体MDTCS和del(TSP5-CUB)的结合。使用板结合测定和表面等离子体共振,我们在跨越残基1874至2813的VWF区域中发现了一个新的ADAMTS13结合位点(K(D)约86 nM),该残基包括VWF D4结构域并与C末端相互作用ADAMTS的域。我们显示,即使VWF在静态条件下(假定为球形且VWF A2域隐藏),也会发生交互。我们证明C末端VWF片段,以及专门针对VWF D4域的抗体,在剪切条件下抑制ADAMTS13对VWF的蛋白水解。我们建议,这种新颖的VWF C末端结合位点可以作为多步相互作用的初始步骤参与,最终导致ADAMTS13对VWF进行蛋白水解。

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