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首页> 外文期刊>Journal of cell biology >The I domain is a major recognition site on the leukocyte integrin Mac-1 (CD11b/CD18) for four distinct adhesion ligands.
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The I domain is a major recognition site on the leukocyte integrin Mac-1 (CD11b/CD18) for four distinct adhesion ligands.

机译:I结构域是白细胞整联蛋白Mac-1(CD11b / CD18)上四个不同粘附配体的主要识别位点。

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Despite the identification and characterization of several distinct ligands for the leukocyte integrin (CD11/CD18) family of adhesion receptors, little is known about the structural regions on these molecules that mediate ligand recognition. In this report, we use alpha subunit chimeras of Mac-1 (CD11b/CD18) and p150,95 (CD11c/CD18), and an extended panel of newly generated and previously characterized mAbs specific to the alpha chain of Mac-1 to map the binding sites for four distinct ligands for Mac-1: iC3b, fibrinogen, ICAM-1, and the as-yet uncharacterized counter-receptor responsible for neutrophil homotypic adhesion. Epitopes of mAbs that blocked ligand binding were mapped with the chimeras and used to localize the ligand recognition sites because the data obtained from functional assays with the Mac-1/p150,95 chimeras were not easily interpreted. Results show that the I domain on the alpha chain of Mac-1 is an important recognition site for all four ligands, and that the NH2-terminal and perhaps divalent cation binding regions but not the COOH-terminal segment may contribute. The recognition sites in the I domain appear overlapping but not identical as individual Mac-1-ligand interactions are distinguished by the discrete patterns of inhibitory mAbs. Additionally, we find that the alpha subunit NH2-terminal region and divalent cation binding region, despite being separated by over 200 amino acids of the I domain, appear structurally apposed because three mAbs require the presence of both of these regions for antigenic reactivity, and chimeras that contain the NH2 terminus of p150,95 require the divalent cation binding region of p150,95 to associate firmly with the beta subunit.
机译:尽管对白细胞整联蛋白(CD11 / CD18)家族的受体的几种不同的配体进行了鉴定和表征,但对这些分子上介导配体识别的结构区域知之甚少。在本报告中,我们使用Mac-1(CD11b / CD18)和p150,95(CD11c / CD18)的α亚基嵌合体,以及新生成和先前表征的Mac-1α链特异单克隆抗体的扩展图来进行映射Mac-1的四个不同配体的结合位点:iC3b,纤维蛋白原,ICAM-1和负责中性粒细胞同型粘附的迄今未表征的抗受体。阻断配体结合的mAb表位与嵌合体定位,并用于定位配体识别位点,因为用Mac-1 / p150,95嵌合体从功能测定中获得的数据不易解释。结果表明,Mac-1的α链上的I结构域是所有四个配体的重要识别位点,并且NH2末端和也许是二价阳离子结合区而不是COOH末端片段可能起作用。 I域中的识别位点看起来重叠,但并不相同,因为单个的Mac-1-配体相互作用通过抑制性mAb的离散模式来区分。此外,我们发现,尽管被I结构域的200多个氨基酸隔开,但α亚基NH2末端区域和二价阳离子结合区域却在结构上并列存在,因为三个mAb需要同时存在这两个区域才能产生抗原反应,并且包含p150,95 NH2末端的嵌合体需要p150,95的二价阳离子结合区与β亚基牢固结合。

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