Department of Microbiology and Immunology, College of Veterinary Medicine, China Agricultural University, Beijing 100193, China.
Department of Microbiology and Immunology, College of Veterinary Medicine, China Agricultural University, Beijing 100193, China
J Immunol. 2021 Apr 1;206(7):1653-1667. doi: 10.4049/jimmunol.2000992. Epub 2021 Feb 26.
The reptile MHC class I (MCH-I) and MHC class II proteins are the key molecules in the immune system; however, their structure has not been investigated. The crystal structure of green anole lizard peptide-MHC-I-β2m (pMHC-I or p-UA0101) was determined in the current study. Subsequently, the features of p-UA0101 were analyzed and compared with the characteristics of pMHC-I of four classes of vertebrates. The amino acid sequence identities between -UA0101 and MHC-I from other species are <50%; however, the differences between the species were reflected in the topological structure. Significant characteristics of p-UA0101 include a specific flip of ∼88° and an upward shift adjacent to the C terminus of the α1- and α2-helical regions, respectively. Additionally, the lizard MHC-I molecule has an insertion of 2 aa (VE) at positions 55 and 56. The pushing force from 55-56VE triggers the flip of the α1 helix. Mutagenesis experiments confirmed that the 55-56VE insertion in the α1 helix enhances the stability of p-UA0101. The peptide presentation profile and motif of p-UA0101 were confirmed. Based on these results, the proteins of three reptile lizard viruses were used for the screening and confirmation of the candidate epitopes. These data enhance our understanding of the systematic differences between five classes of vertebrates at the gene and protein levels, the formation of the pMHC-I complex, and the evolution of the MHC-I system.
爬行动物 MHC I 类(MCH-I)和 MHC II 类蛋白是免疫系统的关键分子;然而,它们的结构尚未被研究。在本研究中,确定了绿鬣蜥肽-MHC-I-β2m(pMHC-I 或 p-UA0101)的晶体结构。随后,分析了 p-UA0101 的特征,并与四类脊椎动物的 pMHC-I 特征进行了比较。-UA0101 与其他物种 MHC-I 的氨基酸序列同一性<50%;然而,物种间的差异反映在拓扑结构上。p-UA0101 的显著特征包括α1-和α2-螺旋区的 C 端附近的约 88°的特定翻转和向上移位。此外,蜥蜴 MHC-I 分子在位置 55 和 56 处具有 2 个 aa(VE)的插入。55-56VE 的推动力触发α1 螺旋的翻转。突变实验证实,α1 螺旋中的 55-56VE 插入增强了 p-UA0101 的稳定性。证实了 p-UA0101 的肽呈递谱和基序。基于这些结果,使用三种爬行动物蜥蜴病毒的蛋白进行了候选表位的筛选和确认。这些数据增强了我们对五类脊椎动物在基因和蛋白质水平上的系统差异、pMHC-I 复合物的形成以及 MHC-I 系统进化的理解。