Suppr超能文献

通过构象激活ADAMTS13的抗体可别构增强金属蛋白酶结构域的功能。

Antibodies that conformationally activate ADAMTS13 allosterically enhance metalloprotease domain function.

作者信息

Schelpe An-Sofie, Petri Anastasis, Roose Elien, Pareyn Inge, Deckmyn Hans, De Meyer Simon F, Crawley James T B, Vanhoorelbeke Karen

机构信息

Laboratory for Thrombosis Research, KU Leuven Campus Kulak Kortrijk, Kortrijk, Belgium; and.

Department of Immunology and Inflammation, Imperial College London, London, United Kingdom.

出版信息

Blood Adv. 2020 Mar 24;4(6):1072-1080. doi: 10.1182/bloodadvances.2019001375.

Abstract

Plasma ADAMTS13 circulates in a folded conformation that is stabilized by an interaction between the central Spacer domain and the C-terminal CUB (complement components C1r and C1s, sea urchin protein Uegf, and bone morphogenetic protein-1) domains. Binding of ADAMTS13 to the VWF D4(-CK) domains or to certain activating murine monoclonal antibodies (mAbs) induces a structural change that extends ADAMTS13 into an open conformation that enhances its function. The objective was to characterize the mechanism by which conformational activation enhances ADAMTS13-mediated proteolysis of VWF. The activating effects of a novel anti-Spacer (3E4) and the anti-CUB1 (17G2) mAbs on the kinetics of proteolysis of VWF A2 domain fragments by ADAMTS13 were analyzed. mAb-induced conformational changes in ADAMTS13 were investigated by enzyme-linked immunosorbent assay. Both mAbs enhanced ADAMTS13 catalytic efficiency (kcat/Km) by ∼twofold (3E4: 2.0-fold; 17G2: 1.8-fold). Contrary to previous hypotheses, ADAMTS13 activation was not mediated through exposure of the Spacer or cysteine-rich domain exosites. Kinetic analyses revealed that mAb-induced conformational extension of ADAMTS13 enhances the proteolytic function of the metalloprotease domain (kcat), rather than augmenting substrate binding (Km). A conformational effect on the metalloprotease domain was further corroborated by the finding that incubation of ADAMTS13 with either mAb exposed a cryptic epitope in the metalloprotease domain that is normally concealed when ADAMTS13 is in a closed conformation. We show for the first time that the primary mechanism of mAb-induced conformational activation of ADAMTS13 is not a consequence of functional exosite exposure. Rather, our data are consistent with an allosteric activation mechanism on the metalloprotease domain that augments active site function.

摘要

血浆ADAMTS13以一种折叠构象循环,该构象通过中央间隔域与C末端CUB(补体成分C1r和C1s、海胆蛋白Uegf以及骨形态发生蛋白-1)域之间的相互作用而稳定。ADAMTS13与VWF D4(-CK)域或某些活化的鼠单克隆抗体(mAb)结合会诱导结构变化,使ADAMTS13伸展成开放构象,从而增强其功能。目的是表征构象激活增强ADAMTS13介导的VWF蛋白水解作用的机制。分析了一种新型抗间隔域(3E4)和抗CUB1(17G2)单克隆抗体对ADAMTS13水解VWF A2域片段动力学的激活作用。通过酶联免疫吸附测定研究了单克隆抗体诱导的ADAMTS13构象变化。两种单克隆抗体均使ADAMTS13的催化效率(kcat/Km)提高了约两倍(3E4:2.0倍;17G2:1.8倍)。与先前的假设相反,ADAMTS13的激活不是通过间隔域或富含半胱氨酸域外部位点的暴露介导的。动力学分析表明,单克隆抗体诱导的ADAMTS13构象伸展增强了金属蛋白酶域的蛋白水解功能(kcat),而不是增加底物结合(Km)。当ADAMTS13处于封闭构象时通常隐藏的金属蛋白酶域中的一个隐蔽表位在ADAMTS13与任一单克隆抗体孵育时暴露,这一发现进一步证实了对金属蛋白酶域的构象效应。我们首次表明,单克隆抗体诱导的ADAMTS13构象激活的主要机制不是功能性外部位点暴露的结果。相反,我们的数据与金属蛋白酶域上的变构激活机制一致,该机制增强了活性位点功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e64/7094026/5e9c87bc8a82/advancesADV2019001375absf1.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验