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Characterization of a Conformationally Sensitive Murine Monoclonal Antibody Directed to the Metal Ion-Dependent Adhesion Site Face of Integrin CD11b

机译:定向到整联蛋白CD11b的金属离子依赖性粘附位面的构象敏感的鼠单克隆抗体的表征。

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Integrin binding to physiologic ligands requires divalent cations and an inside-out-driven switch of the integrin to a high-affinity state. Divalent cations at the metal ion-dependent adhesion site (MIDAS) face of the α subunit-derived A domain provide a direct bridge between ligands and the integrin, and it has been proposed that activation dependency is caused by reorientation of the surrounding residues relative to the metal ion, forming an optimal binding interface. To gain more insight into the functional significance of the protein movements on the MIDAS face, we raised and characterized a murine mAb 107 directed against the MIDAS face of the A domain from integrin CD11b. We find that mAb 107 behaves as a ligand mimic. It binds in a divalent-cation-dependent manner to solvent-exposed residues on the MIDAS face of CD11b, blocks interaction of 11bA or the holoreceptor with ligands, and inhibits spreading and phagocytosis by human neutrophils. However, in contrast to physiologic ligands, mAb 107 preferentially binds to the inactive low-affinity form of the integrin, suggesting that its antagonistic effects are exerted in part by stabilizing the receptor in the low-affinity state. These data support a functional relevance of the protein movements on the MIDAS face and suggest that stabilizing the A domain in the low-affinity state may have therapeutic benefit.
机译:整联蛋白与生理配体的结合需要二价阳离子和整联蛋白由内而外驱动的向高亲和力状态的转换。 α亚基衍生的A结构域的金属离子依赖性粘附位点(MIDAS)面上的二价阳离子提供了配体与整联蛋白之间的直接桥梁,并且有人提出活化依赖性是由于周围残基相对于金属离子,形成最佳结合界面。为了更深入地了解MIDAS面上蛋白质运动的功能重要性,我们从整合素CD11b产生并表征了针对A结构域的MIDAS面的鼠单克隆抗体107。我们发现mAb 107表现为配体模拟物。它以二价阳离子依赖性方式与CD11b的MIDAS面上溶剂暴露的残基结合,阻断11bA或holoreceptor与配体的相互作用,并抑制人嗜中性粒细胞的扩散和吞噬作用。但是,与生理配体相反,mAb 107优先结合至整联蛋白的非活性低亲和力形式,这表明其拮抗作用是通过稳定低亲和力状态的受体而发挥的。这些数据支持了MIDAS面上蛋白质运动的功能相关性,并表明将A结构域稳定在低亲和力状态可能具有治疗益处。

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