Tuckwell D S, Smith L, Korda M, Askari J A, Santoso S, Barnes M J, Farndale R W, Humphries M J
Wellcome Trust Centre for Cell-Matrix Research, School of Biological Sciences, University of Manchester, Oxford Road, Manchester M13 9PT, UK.
Biochem J. 2000 Sep 1;350 Pt 2(Pt 2):485-93.
Integrin alpha2beta1 is the major receptor for collagens in the human body, and the collagen-binding site on the alpha2 subunit von Willebrand factor A-type domain (vWFA domain) is now well defined. However, the biologically important conformational changes that are associated with collagen binding, and the means by which the vWFA domain is integrated into the whole integrin are not completely understood. We have raised monoclonal antibodies against recombinant alpha2 vWFA domain for use as probes of function. Three antibodies, JA202, JA215 and JA218, inhibited binding to collagen, collagen I C-propeptide and E-cadherin, demonstrating that their function is important for structurally diverse alpha2beta1 ligands. Cross-blocking studies grouped the epitopes into two clusters: (I) JA202, the inhibitory antibody, Gi9, and a non-inhibitory antibody, JA208; (II) JA215 and JA218. Both clusters were sensitive to events at the collagen binding site, as binding of Gi9, JA202, JA215 and JA218 were inhibited by collagen peptide, JA208 binding was enhanced by collagen peptide, and binding of JA202 was decreased after mutagenesis of the cation-binding residue Thr(221) to alanine. Binding of cluster I antibodies was inhibited by the anti-functional anti-beta1 antibody Mab13, and binding of Gi9 and JA218 to alpha2beta1 was inhibited by substituting Mn(2+) for Mg(2+), demonstrating that these antibodies were sensitive to changes initiated outside the vWFA domain. Mapping of epitopes showed that JA202 and Gi9 bound between residues 212-216, while JA208 bound between residues 199-216. We have therefore identified two epitope clusters with novel properties; i.e. they are intimately associated with the collagen-binding site, responsive to conformational changes at the collagen-binding site and sensitive to events initiated outside the vWFA domain.
整合素α2β1是人体中胶原蛋白的主要受体,α2亚基上的von Willebrand因子A样结构域(vWFA结构域)中的胶原蛋白结合位点现已明确。然而,与胶原蛋白结合相关的生物学上重要的构象变化以及vWFA结构域整合到整个整合素中的方式尚未完全了解。我们制备了针对重组α2 vWFA结构域的单克隆抗体,用作功能探针。三种抗体JA202、JA215和JA218抑制与胶原蛋白、I型胶原蛋白C前肽和E-钙黏蛋白的结合,表明它们的功能对于结构多样的α2β1配体很重要。交叉阻断研究将表位分为两个簇:(I)抑制性抗体JA202、Gi9和非抑制性抗体JA208;(II)JA215和JA218。两个簇都对胶原蛋白结合位点处的事件敏感,因为胶原蛋白肽可抑制Gi9、JA202、JA215和JA218的结合,胶原蛋白肽可增强JA208的结合,并且在阳离子结合残基苏氨酸(Thr)221突变为丙氨酸后JA202的结合减少。I簇抗体的结合被抗功能性抗β1抗体Mab13抑制,并且用Mn(2+)替代Mg(2+)可抑制Gi9和JA218与α2β1的结合,表明这些抗体对vWFA结构域之外引发的变化敏感。表位图谱显示JA202和Gi9结合在残基212 - 216之间,而JA208结合在残基199 - 216之间。因此,我们鉴定出了两个具有新特性的表位簇;即它们与胶原蛋白结合位点密切相关,对胶原蛋白结合位点处的构象变化有反应并且对vWFA结构域之外引发的事件敏感。