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细胞黏附分子 nectin-2/CD112 的晶体结构及其与免疫受体 DNAM-1/CD226 的结合。

Crystal structure of cell adhesion molecule nectin-2/CD112 and its binding to immune receptor DNAM-1/CD226.

机构信息

CAS Key Laboratory of Pathogenic Microbiology and Immunology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101 China.

出版信息

J Immunol. 2012 Jun 1;188(11):5511-20. doi: 10.4049/jimmunol.1200324. Epub 2012 Apr 30.

Abstract

The nectin and nectin-like molecule (Necl) family includes important cell adhesion molecules (CAMs) characterized by their Ig-like nature. Such CAMs regulate a broad spectrum of cell-cell interactions, including the interaction between NK cells and cytotoxic T lymphocytes (CTLs) and their target cells. CAM members nectin-2 (CD112) and Necl-5 (CD155) are believed to form homodimers (for nectin-2) or heterodimers in their functions for cell adhesion, as well as to interact with immune costimulatory receptor DNAX accessory molecule 1 (DNAM-1) (CD226) to regulate functions of both NK and CTL cells. However, the structural basis of the interactive mode of DNAM-1 with nectin-2 or Necl-5 is not yet understood. In this study, a soluble nectin-2 Ig-like V-set domain (nectin-2v) was successfully prepared and demonstrated to bind to both soluble ectodomain and cell surface-expressed full-length DNAM-1. The 1.85-Å crystal structure of nectin-2v displays a perpendicular homodimer arrangement, revealing the homodimer characteristics of the nectin and Necls. Further mutational analysis indicated that disruption of the homodimeric interface of nectin-2v led to a failure of the homodimer formation, as confirmed by crystal structure and biochemical properties of the mutant protein of nectin-2v. Interestingly, the monomer mutant also loses DNAM-1 binding, as evidenced by cell staining with tetramers and surface plasmon resonance assays. The data indicate that interaction with DNAM-1 requires either the homodimerization or engagement of the homodimeric interface of nectin-2v. These results have implications for immune intervention of tumors or autoimmune diseases in the DNAM-1/nectin-2-dependent pathway.

摘要

黏附素和黏附素样分子(Necl)家族包括重要的细胞黏附分子(CAM),其特征为 Ig 样结构。此类 CAM 调节广泛的细胞-细胞相互作用,包括 NK 细胞和细胞毒性 T 淋巴细胞(CTL)与其靶细胞之间的相互作用。CAM 成员 nectin-2(CD112)和 Necl-5(CD155)被认为在其细胞黏附功能中形成同源二聚体(nectin-2)或异源二聚体,并且与免疫共刺激受体 DNAX 辅助分子 1(DNAM-1)(CD226)相互作用,以调节 NK 和 CTL 细胞的功能。然而,DNAM-1 与 nectin-2 或 Necl-5 相互作用的模式的结构基础尚不清楚。在这项研究中,成功制备了可溶性 nectin-2 Ig 样 V 结构域(nectin-2v),并证明其与可溶性细胞外结构域和细胞表面表达的全长 DNAM-1 结合。nectin-2v 的 1.85-Å 晶体结构显示出垂直同源二聚体排列,揭示了黏附素和 Necls 的同源二聚体特征。进一步的突变分析表明,破坏 nectin-2v 的同源二聚体界面导致同源二聚体形成失败,这通过 nectin-2v 突变蛋白的晶体结构和生化特性得到证实。有趣的是,单体突变体也失去了与 DNAM-1 的结合,这可以通过与四聚体细胞染色和表面等离子体共振测定来证明。这些数据表明,与 DNAM-1 的相互作用需要 nectin-2v 的同源二聚化或同源二聚体界面的参与。这些结果对 DNAM-1/nectin-2 依赖性途径中的肿瘤或自身免疫性疾病的免疫干预具有意义。

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