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黏膜相关不变 T 细胞上的双重 TCR-α 表达可能会对 TCR 解释造成干扰。

Dual TCR-α Expression on Mucosal-Associated Invariant T Cells as a Potential Confounder of TCR Interpretation.

机构信息

Division of Rheumatology, Inflammation and Immunity, Brigham and Women's Hospital, Harvard Medical School, Boston, MA;

Division of Experimental Medicine, Department of Medicine, Zuckerberg San Francisco General Hospital, University of California, San Francisco, San Francisco, CA.

出版信息

J Immunol. 2022 Mar 15;208(6):1389-1395. doi: 10.4049/jimmunol.2100275. Epub 2022 Mar 4.

Abstract

Mucosal-associated invariant T (MAIT) cells are innate-like T cells that are highly abundant in human blood and tissues. Most MAIT cells have an invariant TCRα-chain that uses T cell receptor α-variable 1-2 (TRAV1-2) joined to TRAJ33/20/12 and recognizes metabolites from bacterial riboflavin synthesis bound to the Ag-presenting molecule MHC class I related (MR1). Our attempts to identify alternative MR1-presented Ags led to the discovery of rare MR1-restricted T cells with non-TRAV1-2 TCRs. Because altered Ag specificity likely alters affinity for the most potent known Ag, 5-(2-oxopropylideneamino)-6-d-ribitylaminouracil (5-OP-RU), we performed bulk TCRα- and TCRβ-chain sequencing and single-cell-based paired TCR sequencing on T cells that bound the MR1-5-OP-RU tetramer with differing intensities. Bulk sequencing showed that use of V genes other than TRAV1-2 was enriched among MR1-5-OP-RU tetramer cells. Although we initially interpreted these as diverse MR1-restricted TCRs, single-cell TCR sequencing revealed that cells expressing atypical TCRα-chains also coexpressed an invariant MAIT TCRα-chain. Transfection of each non-TRAV1-2 TCRα-chain with the TCRβ-chain from the same cell demonstrated that the non-TRAV1-2 TCR did not bind the MR1-5-OP-RU tetramer. Thus, dual TCRα-chain expression in human T cells and competition for the endogenous β-chain explains the existence of some MR1-5-OP-RU tetramer T cells. The discovery of simultaneous expression of canonical and noncanonical TCRs on the same T cell means that claims of roles for non-TRAV1-2 TCR in MR1 response must be validated by TCR transfer-based confirmation of Ag specificity.

摘要

黏膜相关不变 T (MAIT) 细胞是先天样 T 细胞,在人类血液和组织中高度丰富。大多数 MAIT 细胞具有不变的 TCRα 链,该链使用 T 细胞受体 α 可变 1-2(TRAV1-2)与 TRAJ33/20/12 相连,并识别与 MHC 类相关(MR1)呈递分子结合的细菌核黄素合成代谢物。我们试图鉴定替代 MR1 呈递的 Ag 导致发现了具有非 TRAV1-2 TCR 的罕见 MR1 限制性 T 细胞。因为改变的 Ag 特异性可能改变与最有效已知 Ag 的亲和力,即 5-(2-氧代丙基二亚氨基)-6-d-核糖基氨基尿嘧啶(5-OP-RU),我们对与 MR1-5-OP-RU 四聚体结合的 T 细胞进行了 bulk TCRα-和 TCRβ-链测序以及基于单细胞的配对 TCR 测序,这些 T 细胞结合 MR1-5-OP-RU 四聚体的强度不同。批量测序显示,在 MR1-5-OP-RU 四聚体细胞中,除 TRAV1-2 之外的 V 基因的使用得到了富集。尽管我们最初将这些解释为不同的 MR1 限制性 TCR,但单细胞 TCR 测序显示表达非典型 TCRα 链的细胞也共表达不变的 MAIT TCRα 链。用相同细胞的 TCRβ 链转染每个非 TRAV1-2 TCRα 链表明,非 TRAV1-2 TCR 不结合 MR1-5-OP-RU 四聚体。因此,人 T 细胞中双 TCRα 链表达和内源性β 链竞争解释了一些 MR1-5-OP-RU 四聚体 T 细胞的存在。在同一 T 细胞上同时表达规范和非规范 TCR 的发现意味着,非 TRAV1-2 TCR 在 MR1 反应中的作用的说法必须通过基于 TCR 转移的 Ag 特异性确认来验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9149/9359468/c79fbf2098e2/nihms-1821499-f0001.jpg

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