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CD2与CD244(2B4)结合蛋白CD48的晶体结构及结合特性

Crystal structure and binding properties of the CD2 and CD244 (2B4)-binding protein, CD48.

作者信息

Evans Edward J, Castro Mónica A A, O'Brien Ronan, Kearney Alice, Walsh Heather, Sparks Lisa M, Tucknott Michael G, Davies Elizabeth A, Carmo Alexandre M, van der Merwe P Anton, Stuart David I, Jones E Yvonne, Ladbury John E, Ikemizu Shinji, Davis Simon J

机构信息

Nuffield Department of Clinical Medicine, The University of Oxford and MRC Human Immunology Unit, Weatherall Institute of Molecular Medicine, John Radcliffe Hospital, Headington, Oxford OX3 9DS, United Kingdom.

出版信息

J Biol Chem. 2006 Sep 29;281(39):29309-20. doi: 10.1074/jbc.M601314200. Epub 2006 Jun 27.

Abstract

The structural analysis of surface proteins belonging to the CD2 subset of the immunoglobulin superfamily has yielded important insights into transient cellular interactions. In mice and rats, CD2 and CD244 (2B4), which are expressed predominantly on T cells and natural killer cells, respectively, bind the same, broadly expressed ligand, CD48. Structures of CD2 and CD244 have been solved previously, and we now present the structure of the receptor-binding domain of rat CD48. The receptor-binding surface of CD48 is unusually flat, as in the case of rat CD2, and shares a high degree of electrostatic complementarity with the equivalent surface of CD2. The relatively simple arrangement of charged residues and this flat topology explain why CD48 cross-reacts with CD2 and CD244 and, in rats, with the CD244-related protein, 2B4R. Comparisons of modeled complexes of CD2 and CD48 with the complex of human CD2 and CD58 are suggestive of there being substantial plasticity in the topology of ligand binding by CD2. Thermodynamic analysis of the native CD48-CD2 interaction indicates that binding is driven by equivalent, weak enthalpic and entropic effects, in contrast to the human CD2-CD58 interaction, for which there is a large entropic barrier. Overall, the structural and biophysical comparisons of the CD2 homologues suggest that the evolutionary diversification of interacting cell surface proteins is rapid and constrained only by the requirement that binding remains weak and specific.

摘要

对免疫球蛋白超家族CD2亚群表面蛋白的结构分析,为瞬时细胞间相互作用提供了重要见解。在小鼠和大鼠中,分别主要在T细胞和自然杀伤细胞上表达的CD2和CD244(2B4),结合相同的、广泛表达的配体CD48。CD2和CD244的结构此前已得到解析,我们现在展示大鼠CD48受体结合域的结构。与大鼠CD2的情况一样,CD48的受体结合表面异常平坦,并且与CD2的等效表面具有高度的静电互补性。带电残基的相对简单排列以及这种平坦的拓扑结构解释了为什么CD48与CD2和CD244发生交叉反应,并且在大鼠中与CD244相关蛋白2B4R发生交叉反应。将CD2和CD48的模拟复合物与人CD2和CD58的复合物进行比较,表明CD2在配体结合拓扑结构方面具有很大的可塑性。对天然CD48 - CD2相互作用的热力学分析表明,与人类CD2 - CD58相互作用存在较大的熵垒不同,其结合是由等效的、微弱的焓效应和熵效应驱动的。总体而言,CD2同源物的结构和生物物理比较表明,相互作用的细胞表面蛋白的进化多样化迅速,并且仅受结合保持微弱且特异这一要求的限制。

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