Graduate Program in Immunology and Department of Pathology, Johns Hopkins University, Baltimore, MD, USA.
Department of Pathology, Johns Hopkins University School of Medicine, Baltimore, MD, 21205, USA.
Immunogenetics. 2019 Mar;71(3):189-196. doi: 10.1007/s00251-018-01097-3. Epub 2019 Jan 26.
The main objective of antigen processing is to orchestrate the selection of immunodominant epitopes for recognition by CD4 T cells. To achieve this, MHC class II molecules have evolved with a flexible peptide-binding groove in need of a bound peptide. Newly synthesized MHC-II molecules bind a class II invariant chain (Ii) upon synthesis and are shuttled to a specialized compartment, where they encounter exogenous antigens. Ii serves multiple functions, one of which is to maintain the shape of the MHC-II groove so that it can readily bind exogenous antigens upon dissociation of the Ii peptide in MHC- II compartment. MIIC contains processing enzymes, one or both accessory molecules, HLA-DM/H2-M (DM) and HLA-DO/H2-O (DO), and optimal denaturing conditions. In a process known as "editing," DM facilitates the dissociation of the invariant chain peptide, CLIP, for exchange with exogenous antigens. Despite the availability of mechanistic insights into DM functions, understanding how DO contributes to epitope selection has proven to be more challenging. The current dogma assumes that DO inhibits DM, whereas an opposing model suggests that DO fine-tunes the epitope selection process. Understanding which of these, or potentially other models of DO function is important, as DO variants have been linked to autoimmunity, cancer, and the generation of broadly neutralizing antibodies to viruses. This review therefore attempts to evaluate experimental evidence in support of these hypotheses, with an emphasis on the less discussed model, and to explore intriguing questions about the importance of DO in biology.
抗原加工的主要目的是协调免疫显性表位被 CD4 T 细胞识别。为了实现这一目标,MHC II 类分子进化出了一个灵活的肽结合槽,需要一个结合的肽。新合成的 MHC-II 分子在合成时与 II 类不变链(Ii)结合,并被运送到一个专门的隔室,在那里它们遇到外源性抗原。Ii 具有多种功能,其中之一是维持 MHC-II 槽的形状,以便在 MHC-II 隔室中 Ii 肽解离后能够轻易地结合外源性抗原。MIIC 包含加工酶、一个或两个辅助分子 HLA-DM/H2-M(DM)和 HLA-DO/H2-O(DO)以及最佳变性条件。在称为“编辑”的过程中,DM 促进不变链肽 CLIP 的解离,以与外源性抗原交换。尽管对 DM 功能的机制有了深入的了解,但要理解 DO 如何有助于表位选择却被证明更具挑战性。目前的主流观点认为 DO 抑制 DM,而另一种模型则认为 DO 微调了表位选择过程。了解这些模型中的哪一种,或者 DO 功能的其他潜在模型,是很重要的,因为 DO 变体与自身免疫、癌症和产生广泛中和病毒抗体有关。因此,本综述试图评估支持这些假说的实验证据,重点讨论较少讨论的模型,并探讨 DO 在生物学中的重要性的一些有趣问题。