Mutational analysis of MAdCAM-1/alpha4beta7 interactions reveals significant binding determinants in both the first and second immunuglobulin domains.

N Green, J Rosebrook, N Cochran, K Tan, J H Wang, T A Springer, M J Briskin
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引用次数: 14

Abstract

The selective emigration of blood born leukocytes into tissues is mediated, in part by interactions of Ig-like cell adhesion molecules (IgCAMs) expressed on vascular endothelium and their cognate ligands, the leukocyte integrins. Within mucosal lymphoid tissues and gastrointestinal sites the mucosal vascular addressin. MAdCAM-1 is the predominant IgCAM, mediating specific lymphocyte homing via interactions with its ligand on lymphocytes, the integrin alpha4beta7. Previous studies have shown that an essential binding motif resides in the first Ig domain of all IgCAMs, containing an acidic residue (D or E) preceded by an aliphatic residue (L or I) that resides in strand C or the CD loop. However, domain swap experiments with MAdCAM-1 and VCAM-1 have shown a requirement for both Ig domains 1 and 2 for efficient integrin binding. We describe the use of chimeric MAdCAM-1/VCAM-1 receptors and point mutations in MAdCAM-1 to define other sites that are required for binding to the integrin alpha4beta7. We find that, in addition to critical CD loop residues, other regions in both domain one and two contribute to MAdCAM-1/alpha4beta7 interactions, including a buried arginine residue in the F strand of domain one and several acidic residues in a highly extended DE ribbon in domain 2. These mutations, when placed in the recently solved crystal structure of human MAdCAM-1 give insight into the integrin binding preference of this unique receptor.

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MAdCAM-1/alpha4beta7相互作用的突变分析揭示了第一和第二免疫球蛋白结构域的重要结合决定因素。
血液生成的白细胞选择性迁移到组织中,部分是通过表达在血管内皮上的igg样细胞粘附分子(IgCAMs)及其同源配体白细胞整合素的相互作用介导的。粘膜淋巴组织和胃肠道内的粘膜血管地址。MAdCAM-1是主要的IgCAM,通过与淋巴细胞上的配体整合素alpha4beta7的相互作用介导特异性淋巴细胞归巢。先前的研究表明,一个基本的结合基序位于所有igcam的第一个Ig结构域,包含一个酸性残基(D或E),前面是一个脂肪残基(L或I),位于链C或CD环中。然而,MAdCAM-1和VCAM-1的结构域交换实验表明,为了有效整合素结合,Ig结构域1和2都是必需的。我们描述了使用嵌合MAdCAM-1/VCAM-1受体和MAdCAM-1中的点突变来定义与整合素alpha4beta7结合所需的其他位点。我们发现,除了关键的CD环残基外,结构域1和结构域2中的其他区域也参与MAdCAM-1/alpha4beta7相互作用,包括结构域1 F链中的一个隐藏的精氨酸残基和结构域2中高度延伸的DE带中的几个酸性残基。当将这些突变放置在最近解决的人类MAdCAM-1晶体结构中时,可以深入了解这种独特受体的整合素结合偏好。
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