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MR1 广泛识别驱动自身反应性黏膜相关不变 T 细胞应答。

Promiscuous recognition of MR1 drives self-reactive mucosal-associated invariant T cell responses.

机构信息

Experimental Immunology, Department of Biomedicine, University Hospital Basel, University of Basel, Basel, Switzerland.

Immunocore Ltd. , Abingdon, UK.

出版信息

J Exp Med. 2023 Sep 4;220(9). doi: 10.1084/jem.20221939. Epub 2023 Jun 29.

Abstract

Mucosal-associated invariant T (MAIT) cells use canonical semi-invariant T cell receptors (TCR) to recognize microbial riboflavin precursors displayed by the antigen-presenting molecule MR1. The extent of MAIT TCR crossreactivity toward physiological, microbially unrelated antigens remains underexplored. We describe MAIT TCRs endowed with MR1-dependent reactivity to tumor and healthy cells in the absence of microbial metabolites. MAIT cells bearing TCRs crossreactive toward self are rare but commonly found within healthy donors and display T-helper-like functions in vitro. Experiments with MR1-tetramers loaded with distinct ligands revealed significant crossreactivity among MAIT TCRs both ex vivo and upon in vitro expansion. A canonical MAIT TCR was selected on the basis of extremely promiscuous MR1 recognition. Structural and molecular dynamic analyses associated promiscuity to unique TCRβ-chain features that were enriched within self-reactive MAIT cells of healthy individuals. Thus, self-reactive recognition of MR1 represents a functionally relevant indication of MAIT TCR crossreactivity, suggesting a potentially broader role of MAIT cells in immune homeostasis and diseases, beyond microbial immunosurveillance.

摘要

黏膜相关恒定 T(MAIT)细胞使用经典的半不变 T 细胞受体(TCR)识别由抗原呈递分子 MR1 展示的微生物核黄素前体。MAIT TCR 对生理上、微生物无关抗原的交叉反应性的程度仍未得到充分探索。我们描述了 MAIT TCR,其在没有微生物代谢物的情况下对肿瘤和健康细胞具有 MR1 依赖性反应性。在没有微生物代谢物的情况下,具有针对自身交叉反应性的 MAIT 细胞很少见,但在健康供体中常见,并在体外表现出辅助性 T 细胞样功能。使用负载不同配体的 MR1-四聚体进行的实验表明,MAIT TCR 之间存在显著的交叉反应性,无论是在体外还是在体外扩增后。一种基于极其混杂的 MR1 识别的经典 MAIT TCR 被选择出来。结构和分子动力学分析将混杂性与独特的 TCRβ链特征相关联,这些特征在健康个体的自身反应性 MAIT 细胞中富集。因此,MR1 的自身反应性识别代表了 MAIT TCR 交叉反应性的一种功能相关指标,表明 MAIT 细胞在免疫稳态和疾病中的作用可能比微生物免疫监视更广泛。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/44e8/10309188/d4dcf1370be1/JEM_20221939_FigS1.jpg

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