Thibodeau Jacques, Moulefera Mohamed Abdelwafi, Balthazard Renaud
Laboratoire d'Immunologie Moléculaire, Département de Microbiologie, Infectiologie et Immunologie, Faculté de Médecine, Université de Montréal, Canada.
Laboratoire d'Immunologie Moléculaire, Département de Microbiologie, Infectiologie et Immunologie, Faculté de Médecine, Université de Montréal, Canada.
Hum Immunol. 2019 Jan;80(1):15-31. doi: 10.1016/j.humimm.2018.10.001. Epub 2018 Oct 12.
Classical HLA class II molecules are highly polymorphic heterodimeric transmembrane proteins encoded by a polygenic cluster on chromosome 6. Polymorphic residues in the membrane-distal domains ensure that a large collection of microbial peptides can be bound in the human population. Still, the HLA-DR, -DP and -DQ isotypes show a high degree of conservation in their overall tertiary and quaternary structures, in line with their common function in T cell receptor activation. Interestingly, the primary structure of the intracellular domains are highly divergent between isotypes and they also show allotypic variations. The functional impact of these differences remains to be fully appreciated. Here, we address the role of the MHC class II cytoplasmic tails in intracellular trafficking. First, the emphasis will be on the interplay between the cytoplasmic domains of classical human MHC class II molecules and those of the invariant chain chaperone (CD74) isoforms. Then, we will examine the importance of the highly conserved β-chain cytoplasmic lysine residue in the ubiquitin-driven trafficking of MHC class II molecules. These considerations should help understand the potential functional impact of sequence variations that may arise in the cytoplasmic tails and transmembrane domains of MHC class II molecules.
经典的人类白细胞抗原(HLA)II类分子是由位于6号染色体上的一个多基因簇编码的高度多态性的异二聚体跨膜蛋白。膜远端结构域中的多态性残基确保了在人类群体中能够结合大量的微生物肽。尽管如此,HLA-DR、-DP和-DQ同种型在其整体三级和四级结构上仍表现出高度的保守性,这与其在T细胞受体激活中的共同功能相一致。有趣的是,细胞内结构域的一级结构在同种型之间高度不同,并且它们还表现出同种异型变异。这些差异的功能影响仍有待充分认识。在这里,我们探讨MHC II类细胞质尾巴在细胞内运输中的作用。首先,重点将放在经典人类MHC II类分子的细胞质结构域与恒定链伴侣(CD74)同种型的细胞质结构域之间的相互作用上。然后,我们将研究高度保守的β链细胞质赖氨酸残基在MHC II类分子泛素驱动的运输中的重要性。这些思考应该有助于理解MHC II类分子细胞质尾巴和跨膜结构域中可能出现的序列变异的潜在功能影响。