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人CTLA-4/B7-2复合物共刺激的结构基础。

Structural basis for co-stimulation by the human CTLA-4/B7-2 complex.

作者信息

Schwartz J C, Zhang X, Fedorov A A, Nathenson S G, Almo S C

机构信息

[1] Department of Microbiology and Immunology, [2] These authors contributed equally to this work.

出版信息

Nature. 2001 Mar 29;410(6828):604-8. doi: 10.1038/35069112.

Abstract

Regulation of T-cell activity is dependent on antigen-independent co-stimulatory signals provided by the disulphide-linked homodimeric T-cell surface receptors, CD28 and CTLA-4 (ref. 1). Engagement of CD28 with B7-1 and B7-2 ligands on antigen-presenting cells (APCs) provides a stimulatory signal for T-cell activation, whereas subsequent engagement of CTLA-4 with these same ligands results in attenuation of the response. Given their central function in immune modulation, CTLA-4- and CD28-associated signalling pathways are primary therapeutic targets for preventing autoimmune disease, graft versus host disease, graft rejection and promoting tumour immunity. However, little is known about the cell-surface organization of these receptor/ligand complexes and the structural basis for signal transduction. Here we report the 3.2-A resolution structure of the complex between the disulphide-linked homodimer of human CTLA-4 and the receptor-binding domain of human B7-2. The unusual dimerization properties of both CTLA-4 and B7-2 place their respective ligand-binding sites distal to the dimer interface in each molecule and promote the formation of an alternating arrangement of bivalent CTLA-4 and B7-2 dimers that extends throughout the crystal. Direct observation of this CTLA-4/B7-2 network provides a model for the periodic organization of these molecules within the immunological synapse and suggests a distinct mechanism for signalling by dimeric cell-surface receptors.

摘要

T细胞活性的调节依赖于由二硫键连接的同型二聚体T细胞表面受体CD28和CTLA-4提供的抗原非依赖性共刺激信号(参考文献1)。CD28与抗原呈递细胞(APC)上的B7-1和B7-2配体结合,为T细胞活化提供刺激信号,而随后CTLA-4与这些相同配体的结合则导致反应减弱。鉴于它们在免疫调节中的核心作用,CTLA-4和CD28相关的信号通路是预防自身免疫性疾病、移植物抗宿主病、移植排斥和促进肿瘤免疫的主要治疗靶点。然而,对于这些受体/配体复合物的细胞表面组织以及信号转导的结构基础知之甚少。在此,我们报告了人CTLA-4的二硫键连接同型二聚体与人B7-2的受体结合结构域之间复合物的3.2埃分辨率结构。CTLA-4和B7-2不同寻常的二聚化特性使它们各自的配体结合位点位于每个分子中二聚体界面的远端,并促进了二价CTLA-4和B7-2二聚体交替排列的形成,这种排列在整个晶体中延伸。对这个CTLA-4/B7-2网络的直接观察为这些分子在免疫突触内的周期性组织提供了一个模型,并提示了二聚体细胞表面受体信号转导的独特机制。

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