Mould A Paul, Symonds Emlyn J H, Buckley Patrick A, Grossmann J Günter, McEwan Paul A, Barton Stephanie J, Askari Janet A, Craig Susan E, Bella Jordi, Humphries Martin J
Wellcome Trust Centre for Cell-Matrix Research, School of Biological Sciences, University of Manchester, Manchester M13 9PT, United Kingdom.
J Biol Chem. 2003 Oct 10;278(41):39993-9. doi: 10.1074/jbc.M304627200. Epub 2003 Jul 19.
The structural basis of the interaction of integrin heterodimers with their physiological ligands is poorly understood. We have used solution x-ray scattering to visualize the head region of integrin alpha 5 beta 1 in an inactive (Ca2+-occupied) state, and in complex with a fragment of fibronectin containing the RGD and synergy recognition sequences. Shape reconstructions of the data have been interpreted in terms of appropriate molecular models. The scattering data suggest that the head region undergoes no gross conformational changes upon ligand binding but do lend support to a proposed outward movement of the hybrid domain in the beta subunit. Fibronectin is observed to bind across the top of the head region, which contains an alpha subunit beta-propeller and a beta subunit vWF type A domain. The model of the complex indicates that the synergy region binds on the side of the beta-propeller domain. In support of this suggestion, mutagenesis of a prominent loop region on the side of the propeller identifies two residues (Tyr208 and Ile210) involved in recognition of the synergy region. Our data provide the first view of a complex between an integrin and a macromolecular ligand in solution, at a nominal resolution of approximately 10 A.
整联蛋白异二聚体与其生理配体相互作用的结构基础目前还了解甚少。我们利用溶液X射线散射技术,观察到处于非活性(钙离子占据)状态的整联蛋白α5β1头部区域,以及它与含有RGD和协同识别序列的纤连蛋白片段形成的复合物。已根据合适的分子模型对数据的形状重建进行了解释。散射数据表明,配体结合后头部区域未发生明显的构象变化,但确实支持了β亚基中杂合结构域向外移动的推测。观察到纤连蛋白结合在头部区域的顶部,该区域包含一个α亚基β-螺旋桨和一个β亚基vWF A型结构域。复合物模型表明,协同区域结合在β-螺旋桨结构域的一侧。为支持这一观点,对螺旋桨一侧一个突出的环区域进行诱变,鉴定出两个参与协同区域识别的残基(Tyr208和Ile210)。我们的数据首次展示了溶液中整联蛋白与大分子配体复合物的情况,名义分辨率约为10埃。