Infection and Immunity Program and Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute, Monash University, Clayton, Australia.
Department of Microbiology and Immunology, Peter Doherty Institute for Infection and Immunity, The University of Melbourne, Parkville, Australia.
FEBS J. 2024 Apr;291(7):1530-1544. doi: 10.1111/febs.17050. Epub 2024 Jan 10.
The heterodimeric natural killer cells antigen CD94 (CD94)-NKG2-A/NKG2-B type II integral membrane protein (NKG2A) receptor family expressed on human and mouse natural killer (NK) cells monitors global major histocompatibility complex (MHC) class I cell surface expression levels through binding to MHC class Ia-derived leader sequence peptides presented by HLA class I histocompatibility antigen, alpha chain E (HLA-E; in humans) or H-2 class I histocompatibility antigen, D-37 (Qa-1; in mice). Although the molecular basis underpinning human CD94-NKG2A recognition of HLA-E is known, the equivalent interaction in the murine setting is not. By determining the high-resolution crystal structure of murine CD94-NKG2A in complex with Qa-1 presenting the Qa-1 determinant modifier peptide (QDM), we resolved the mode of binding. Compared to the human homologue, the murine CD94-NKG2A-Qa-1-QDM displayed alterations in the distribution of interactions across CD94 and NKG2A subunits that coincide with differences in electrostatic complementarity of the ternary complex and the lack of cross-species reactivity. Nevertheless, we show that Qa-1b could be modified through W65R + N73I mutations to mimic HLA-E, facilitating binding with both human and murine CD94-NKG2A. These data underscore human and murine CD94-NKG2A cross-species heterogeneity and provide a foundation for humanising Qa-1b in immune system models.
人源和鼠源自然杀伤(NK)细胞表面表达的二聚体天然杀伤细胞抗原 CD94(CD94)-NKG2-A/NKG2-B 型 II 整联膜蛋白(NKG2A)受体家族通过与 HLA 类 I 相容性抗原、α链 E(人)或 H-2 类 I 相容性抗原、D-37(Qa-1;鼠)所呈递的 MHC 类 I 衍生的前导序列肽结合,监测 MHC 类 I 细胞表面表达水平。虽然已知人 CD94-NKG2A 识别 HLA-E 的分子基础,但在鼠类中尚不清楚其等效相互作用。通过确定与人 HLA-E 结合的人源 CD94-NKG2A 的高分辨率晶体结构,我们解析了结合模式。与同源物相比,鼠源 CD94-NKG2A-Qa-1-QDM 中 CD94 和 NKG2A 亚基之间的相互作用分布发生了改变,这与三聚物复合物的静电互补性差异以及缺乏种间反应性一致。尽管如此,我们表明,Qa-1b 可以通过 W65R+N73I 突变进行修饰以模拟 HLA-E,从而促进人与鼠源 CD94-NKG2A 的结合。这些数据突出了人源和鼠源 CD94-NKG2A 的种间异质性,并为人源化免疫系统模型中的 Qa-1b 提供了基础。