Sumathipala Rushika, Xu Cunshuan, Seago Julian, Mould A Paul, Humphries Martin J, Craig Sue E, Patel Yatin, Wijelath Errol S, Sobel Michael, Rahman Salman
Laboratory of Thrombosis and Vascular Remodelling, Division of Cardiovascular Medicine, King's College London School of Medicine, St Thomas' Hospital, Lambeth Palace Road, London SE1 7EH, United Kingdom.
J Biol Chem. 2006 Dec 8;281(49):37686-96. doi: 10.1074/jbc.M603943200. Epub 2006 Sep 18.
Disintegrins are a family of potent inhibitors of cell-cell and cell-matrix adhesion. In this study we have identified a region of the disintegrin elegantin, termed the "linker domain" (amino acids 38-47), with inhibitory activity toward alpha(5)beta(1)-mediated cell adhesion on fibronectin (Fn). Using a chimeric structure-function approach in which sequences of the functionally distinct disintegrin kistrin were introduced into the elegantin template at targeted sites, a loss of inhibitory function toward alpha(5)beta(1)-mediated adhesion on Fn was observed when the elegantin linker domain was substituted. Subsequent analysis comparing the inhibitory efficacies of the panel of elegantin-kistrin chimeras toward CHO alpha(5) cell adhesion on recombinant Fn III(6-10) fragments showed that the loss of inhibitory activity associated with the disruption of the elegantin linker domain was dependent upon the presence of a functional Fn III(9) synergy site within the Fn III(6-10) substrate. This suggested that the elegantin linker domain inhibits primarily the activity of the Fn synergy domain in promoting alpha(5)beta(1) integrin-mediated cell adhesion. Construction of a cyclic peptide corresponding to the entire region of the elegantin linker domain showed that this domain has intrinsic alpha(5)beta(1) inhibitory activity comparable with the activity of the RGDS peptide. These data demonstrate a novel biological function for a disintegrin domain that antagonizes integrin-mediated cell adhesion.
去整合素是一类强效的细胞间和细胞与基质黏附的抑制剂。在本研究中,我们鉴定出去整合素elegantin的一个区域,称为“连接域”(氨基酸38 - 47),它对纤连蛋白(Fn)上α(5)β(1)介导的细胞黏附具有抑制活性。使用一种嵌合结构 - 功能方法,即将功能不同的去整合素水蛭素的序列在目标位点引入elegantin模板中,当elegantin连接域被替换时,观察到对Fn上α(5)β(1)介导的黏附的抑制功能丧失。随后对一组elegantin - 水蛭素嵌合体对重组Fn III(6 - 10)片段上CHO α(5)细胞黏附的抑制效力进行比较分析,结果表明与elegantin连接域破坏相关的抑制活性丧失取决于Fn III(6 - 10)底物中功能性Fn III(9)协同位点的存在。这表明elegantin连接域主要抑制Fn协同域在促进α(5)β(1)整合素介导的细胞黏附中的活性。构建与elegantin连接域整个区域相对应的环肽表明,该区域具有与RGDS肽活性相当的内在α(5)β(1)抑制活性。这些数据证明了去整合素结构域具有一种拮抗整合素介导的细胞黏附的新生物学功能。