首页> 外文OA文献 >Distinct roles of β1 metal ion-dependent adhesion site (MIDAS), adjacent to MIDAS (ADMIDAS), and ligand-associated metal-binding site (LIMBS) cation-binding sites in ligand recognition by integrin α2β1
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Distinct roles of β1 metal ion-dependent adhesion site (MIDAS), adjacent to MIDAS (ADMIDAS), and ligand-associated metal-binding site (LIMBS) cation-binding sites in ligand recognition by integrin α2β1

机译:β1金属离子依赖性粘附位点(mIDas),邻近mIDas(aDmIDas)和配体相关金属结合位点(LImBs)阳离子结合位点在整合素α2β1识别配体中的不同作用

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摘要

Integrin-ligand interactions are regulated in a complex manner by divalent cations, and previous studies have identified ligand-competent, stimulatory, and inhibitory cation-binding sites. In collagen-binding integrins, such as α2β1, ligand recognition takes place exclusively at the α subunit I domain. However, activation of the αI domain depends on its interaction with a structurally similar domain in the β subunit known as the I-like or βI domain. The top face of the βI domain contains three cation-binding sites: the metal-ion dependent adhesion site (MIDAS), the ADMIDAS (adjacent to MIDAS), and LIMBS (ligand-associated metal-binding site). The role of these sites in controlling ligand binding to the αI domain has yet to be elucidated. Mutation of the MIDAS or LIMBS completely blocked collagen binding to α2β1; in contrast mutation of the ADMIDAS reduced ligand recognition but this effect could be overcome by the activating monoclonal antibody TS2/16. Hence, the MIDAS and LIMBS appear to be essential for the interaction between αI and βI, whereas occupancy of the ADMIDAS has an allosteric effect on the conformation of βI. An activating mutation in the α2 I domain partially restored ligand binding to the MIDAS and LIMBS mutants. Analysis of the effects of Ca2+, Mg2+, and Mn2+ on ligand binding to these mutants showed that the MIDAS is a ligand-competent site through which Mn2+ stimulates ligand binding, whereas the LIMBS is a stimulatory Ca2+-binding site, occupancy of which increases the affinity of Mg2+ for the MIDAS. © 2008 by The American Society for Biochemistry and Molecular Biology, Inc.
机译:整联蛋白-配体的相互作用以复杂的方式被二价阳离子调节,并且先前的研究已经确定了配体能,刺激性和抑制性阳离子结合位点。在诸如α2β1之类的胶原结合整联蛋白中,配体识别仅发生在α亚基I结构域。但是,αI结构域的激活取决于其与β亚基中结构相似的结构域(称为I-like或βI结构域)的相互作用。 βI结构域的顶面包含三个阳离子结合位点:金属离子依赖性粘附位点(MIDAS),ADMINDAS(与MIDAS相邻)和LIMBS(与配体相关的金属结合位点)。这些位点在控制配体与αI结构域结合中的作用尚未阐明。 MIDAS或LIMBS的突变完全阻断了胶原蛋白与α2β1的结合。相反,ADMINDAS的突变降低了配体识别,但是这种作用可以通过活化的单克隆抗体TS2 / 16克服。因此,MIDAS和LIMBS似乎对于αI和βI之间的相互作用必不可少,而ADMIDAS的占用对βI的构象具有变构作用。 α2I结构域中的激活突变部分恢复了配体与MIDAS和LIMBS突变体的结合。 Ca2 +,Mg2 +和Mn2 +对配体与这些突变体结合的影响的分析表明,MIDAS是配体胜任的位点,Mn2 +通过该位点刺激配体结合,而LIMBS是刺激性的Ca2 +结合位点,其占据增加了Mg2 +对MIDAS的亲和力。 ©2008,美国生物化学与分子生物学学会。

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