Different routes of MHC-I delivery to phagosomes and their consequences to CD8 T cell immunity

IF 7.4 2区 医学 Q1 IMMUNOLOGY
J. Magarian Blander
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引用次数: 3

Abstract

Dendritic cells (DCs) present internalized antigens to CD8 T cells through cross-presentation by major histocompatibility complex class I (MHC-I) molecules. While conventional cDC1 excel at cross-presentation, cDC2 can be licensed to cross-present during infection by signals from inflammatory receptors, most prominently Toll-like receptors (TLRs). At the core of the regulation of cross-presentation by TLRs is the control of subcellular MHC-I traffic. Within DCs, MHC-I are enriched within endosomal recycling compartments (ERC) and traffic to microbe-carrying phagosomes under the control of phagosome-compartmentalized TLR signals to favor CD8 T cell cross-priming to microbial antigens. Viral blockade of the transporter associated with antigen processing (TAP), known to inhibit the classic MHC-I presentation of cytoplasmic protein-derived peptides, depletes the ERC stores of MHC-I to simultaneously also block TLR-regulated cross-presentation. DCs counter this impairment in the two major pathways of MHC-I presentation to CD8 T cells by mobilizing noncanonical cross-presentation, which delivers MHC-I to phagosomes from a new location in the ER-Golgi intermediate compartment (ERGIC) where MHC-I abnormally accumulate upon TAP blockade. Noncanonical cross-presentation thus rescues MHC-I presentation and cross-primes TAP-independent CD8 T cells best-matched against target cells infected with immune evasive viruses. Because noncanonical cross-presentation relies on a phagosome delivery route of MHC-I that is not under TLR control, it risks potential cross-presentation of self-antigens during infection. Here I review these findings to illustrate how the subcellular route of MHC-I to phagosomes critically impacts the regulation of cross-presentation and the nature of the CD8 T cell response to infection and cancer. I highlight important and novel implications to CD8 T cell vaccines and immunotherapy.

MHC-I向吞噬体传递的不同途径及其对CD8 T细胞免疫的影响
树突状细胞(DC)通过主要组织相容性复合体I类(MHC-I)分子的交叉呈递将内化抗原呈递给CD8 T细胞。虽然传统的cDC1擅长交叉呈递,但cDC2可以在感染期间通过炎症受体的信号交叉呈递,最显著的是Toll样受体(TLRs)。TLRs交叉呈递调控的核心是对亚细胞MHC-I流量的控制。在DC中,MHC-I在内涵体循环区室(ERC)内富集,并在吞噬体区室化TLR信号的控制下运输到携带微生物的吞噬体,以促进CD8 T细胞对微生物抗原的交叉引发。已知病毒阻断与抗原处理相关的转运蛋白(TAP)可抑制细胞质蛋白衍生肽的经典MHC-I呈递,耗尽MHC-I的ERC储存,同时阻断TLR调节的交叉呈递。DC通过动员非经典交叉呈递来对抗MHC-I向CD8 T细胞呈递的两个主要途径中的这种损伤,该非经典交叉递呈将MHC-I从ERG-Golgi中间区室(ERGIC)中的一个新位置递送到吞噬体,在TAP阻断后,MHC-I异常积累。因此,非经典交叉呈递挽救了MHC-I呈递,并交叉启动了与感染免疫逃避病毒的靶细胞最匹配的TAP非依赖性CD8 T细胞。由于非经典交叉呈递依赖于MHC-I的吞噬体递送途径,而该途径不受TLR控制,因此在感染期间存在自身抗原潜在交叉呈递的风险。在此,我回顾了这些发现,以说明MHC-I通向吞噬体的亚细胞途径如何严重影响交叉呈递的调节以及CD8 T细胞对感染和癌症反应的性质。我强调了对CD8 T细胞疫苗和免疫疗法的重要和新的意义。
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来源期刊
Seminars in Immunology
Seminars in Immunology 医学-免疫学
CiteScore
11.40
自引率
1.30%
发文量
50
审稿时长
89 days
期刊介绍: Seminars in Immunology is a specialized review journal that serves as a valuable resource for scientists in the field of immunology. The journal's approach is thematic, with each issue dedicated to a specific topic of significant interest to immunologists. It covers a wide range of research areas, from the molecular and cellular foundations of the immune response to the potential for its manipulation, highlighting recent advancements in these areas. Each thematic issue is curated by a guest editor, who is recognized as an expert in the field internationally. The content of each issue typically includes six to eight authoritative invited reviews, which delve into various aspects of the chosen topic. The goal of these reviews is to provide a comprehensive, coherent, and engaging overview of the subject matter, ensuring that the information is presented in a timely manner to maintain its relevance. The journal's commitment to quality and timeliness is further supported by its inclusion in the Scopus database, which is a leading abstract and citation database of peer-reviewed literature. Being indexed in Scopus helps to ensure that the journal's content is accessible to a broad audience of researchers and professionals in immunology and related fields.
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