首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Crystal structure of the CD2-binding domain of CD58 (lymphocyte function-associated antigen 3) at 1.8-Å resolution
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Crystal structure of the CD2-binding domain of CD58 (lymphocyte function-associated antigen 3) at 1.8-Å resolution

机译:CD58的CD2结合结构域(淋巴细胞功能相关抗原3)的晶体结构分辨率为1.8-Å

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摘要

The binding of the cell surface molecule CD58 (formerly lymphocyte function-associated antigen 3) to its ligand, CD2, significantly increases the sensitivity of antigen recognition by T cells. This was the first heterophilic cell adhesion interaction to be discovered and is now an important paradigm for analyzing the structural basis of cell–cell recognition. The crystal structure of a CD2-binding chimeric form of CD58, solved to 1.8-Å resolution, reveals that the ligand binding domain of CD58 has the expected Ig superfamily V-set topology and shares several of the hitherto unique structural features of CD2, consistent with previous speculation that the genes encoding these molecules arose via duplication of a common precursor. Nevertheless, evidence for considerable divergence of CD2 and CD58 is also implicit in the structures. Mutations that disrupt CD2 binding map to the highly acidic surface of the AGFCC′C′′ β-sheet of CD58, which, unexpectedly, lacks marked shape complementarity to the equivalent, rather more basic CD58-binding face of human CD2. The specificity of the very weak interactions of proteins mediating cell–cell recognition may often derive largely from electrostatic complementarity, with shape matching at the protein–protein interface being less exact than for interactions that combine specificity with high affinity, such as those involving antibodies.
机译:细胞表面分子CD58(以前与淋巴细胞功能相关的抗原3)与其配体CD2的结合显着增加了T细胞识别抗原的敏感性。这是第一个发现的嗜异性细胞粘附相互作用,现在已成为分析细胞-细胞识别结构基础的重要范例。解析为1.8-Å分辨率的CD58的CD2结合嵌合形式的晶体结构表明,CD58的配体结合域具有预期的Ig超家族V-集拓扑结构,并具有迄今为止CD2的一些独特结构特征,一致先前推测,编码这些分子的基因是通过复制共同的前体而产生的。但是,在结构中也隐含了CD2和CD58差异很大的证据。破坏CD2结合的突变会映射到CD58的AGFCC'C''β-折叠的高酸性表面,这出乎意料地缺乏与人CD2的等效,更基本的CD58结合面明显的形状互补性。介导细胞间识别的蛋白质相互作用非常弱,其特异性通常可能主要来自静电互补性,蛋白质-蛋白质界面的形状匹配不如结合特异性和高亲和力的相互作用(如涉及抗体的相互作用)精确。

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