South Kieron, Luken Brenda M, Crawley James T B, Phillips Rebecca, Thomas Mari, Collins Richard F, Deforche Louis, Vanhoorelbeke Karen, Lane David A
Centre for Haematology, Imperial College London, London W12 ONN, United Kingdom;
Electron Microscopy Facility, Faculty of Life Sciences, University of Manchester, Manchester M13 9PL, United Kingdom; and.
Proc Natl Acad Sci U S A. 2014 Dec 30;111(52):18578-83. doi: 10.1073/pnas.1411979112. Epub 2014 Dec 15.
A disintegrin and metalloprotease with thrombospondin motifs 13 (ADAMTS13) is a metalloprotease that regulates von Willebrand factor (VWF) function. ADAMTS13-mediated proteolysis is determined by conformational changes in VWF, but also may depend on its own conformational activation. Kinetic analysis of WT ADAMTS13 revealed ∼ 2.5-fold reduced activity compared with ADAMTS13 lacking its C-terminal tail (MDTCS) or its CUB1-2 domains (WTΔCUB1-2), suggesting that the CUB domains naturally limit ADAMTS13 function. Consistent with this suggestion, WT ADAMTS13 activity was enhanced ∼ 2.5-fold by preincubation with either an anti-CUB mAb (20E9) or VWF D4CK (the natural binding partner for the CUB domains). Furthermore, the isolated CUB1-2 domains not only bound MDTCS, but also inhibited activity by up to 2.5-fold. Interestingly, a gain-of-function (GoF) ADAMTS13 spacer domain variant (R568K/F592Y/R660K/Y661F/Y665F) was ∼ 2.5-fold more active than WT ADAMTS13, but could not be further activated by 20E9 mAb or VWF D4CK and was unable to bind or to be inhibited by the CUB1-2 domains, suggesting that the inhibitory effects of the CUB domains involve an interaction with the spacer domain that is disrupted in GoF ADAMTS13. Electron microscopy demonstrated a "closed" conformation of WT ADAMTS13 and suggested a more "open" conformation for GoF ADAMTS13. The cryptic spacer domain epitope revealed by conformational unfolding also represents the core antigenic target for autoantibodies in thrombotic thrombocytopenic purpura. We propose that ADAMTS13 circulates in a closed conformation, which is maintained by a CUB-spacer domain binding interaction. ADAMTS13 becomes conformationally activated on demand through interaction of its C-terminal CUB domains with VWF, making it susceptible to immune recognition.
含血小板反应蛋白基序的解聚素和金属蛋白酶13(ADAMTS13)是一种调节血管性血友病因子(VWF)功能的金属蛋白酶。ADAMTS13介导的蛋白水解作用由VWF的构象变化决定,但也可能取决于其自身的构象激活。对野生型ADAMTS13的动力学分析显示,与缺少C末端尾巴(MDTCS)或其CUB1-2结构域(WTΔCUB1-2)的ADAMTS13相比,其活性降低了约2.5倍,这表明CUB结构域天然地限制了ADAMTS13的功能。与这一推测一致的是,野生型ADAMTS13与抗CUB单克隆抗体(20E9)或VWF D4CK(CUB结构域的天然结合伴侣)预孵育后,其活性增强了约2.5倍。此外,分离出的CUB1-2结构域不仅能与MDTCS结合,还能将活性抑制高达2.5倍。有趣的是,一种功能获得性(GoF)ADAMTS13间隔区结构域变体(R568K/F592Y/R660K/Y661F/Y665F)的活性比野生型ADAMTS13高约2.5倍,但不能被20E9单克隆抗体或VWF D4CK进一步激活,也不能与CUB1-2结构域结合或被其抑制,这表明CUB结构域的抑制作用涉及与间隔区结构域的相互作用,而这种相互作用在GoF ADAMTS13中被破坏。电子显微镜显示野生型ADAMTS13呈“封闭”构象,而GoF ADAMTS13则呈现出更“开放”的构象。构象展开所揭示的隐蔽间隔区结构域表位也代表了血栓性血小板减少性紫癜中自身抗体的核心抗原靶点。我们提出,ADAMTS13以封闭构象循环,这种构象由CUB-间隔区结构域结合相互作用维持。ADAMTS13通过其C末端CUB结构域与VWF的相互作用按需进行构象激活,使其易于被免疫识别。