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The molecular basis for recognition of CD1d/α-galactosylceramide by a human non-Vα24 T cell receptor.人类非 Vα24 T 细胞受体识别 CD1d/α-半乳糖神经酰胺的分子基础。
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MR1 presents microbial vitamin B metabolites to MAIT cells.MR1 将微生物维生素 B 代谢物呈递给 MAIT 细胞。
Nature. 2012 Nov 29;491(7426):717-23. doi: 10.1038/nature11605. Epub 2012 Oct 10.
8
Recognition of CD1d-sulfatide mediated by a type II natural killer T cell antigen receptor.由 II 型自然杀伤 T 细胞抗原受体识别 CD1d-硫酸酯。
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9
Type II natural killer T cells use features of both innate-like and conventional T cells to recognize sulfatide self antigens.II 型自然杀伤 T 细胞利用先天样和常规 T 细胞的特征来识别硫酸脑苷脂自身抗原。
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10
Structural insight into MR1-mediated recognition of the mucosal associated invariant T cell receptor.MR1 介导的黏膜相关不变 T 细胞受体识别的结构见解。
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MAIT 细胞识别与 MR1 结合的刺激性细菌抗原。

MAIT recognition of a stimulatory bacterial antigen bound to MR1.

机构信息

Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637;

出版信息

J Immunol. 2013 Nov 15;191(10):5268-77. doi: 10.4049/jimmunol.1301958. Epub 2013 Oct 9.

DOI:10.4049/jimmunol.1301958
PMID:24108697
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3819123/
Abstract

MR1-restricted mucosal-associated invariant T (MAIT) cells represent a subpopulation of αβ T cells with innate-like properties and limited TCR diversity. MAIT cells are of interest because of their reactivity against bacterial and yeast species, suggesting that they play a role in defense against pathogenic microbes. Despite the advances in understanding MAIT cell biology, the molecular and structural basis behind their ability to detect MR1-Ag complexes is unclear. In this study, we present our structural and biochemical characterization of MAIT TCR engagement of MR1 presenting an Escherichia coli-derived stimulatory ligand, rRL-6-CH2OH, previously found in Salmonella typhimurium. We show a clear enhancement of MAIT TCR binding to MR1 due to the presentation of this ligand. Our structure of a MAIT TCR/MR1/rRL-6-CH2OH complex shows an evolutionarily conserved binding orientation, with a clear role for both the CDR3α and CDR3β loops in recognizing the rRL-6-CH2OH stimulatory ligand. We also present two additional xenoreactive MAIT TCR/MR1 complexes that recapitulate the docking orientation documented previously, despite having variation in the CDR2β and CDR3β loop sequences. Our data support a model by which MAIT TCRs engage MR1 in a conserved fashion, with their binding affinities modulated by the nature of the MR1-presented Ag or diversity introduced by alternate Vβ usage or CDR3β sequences.

摘要

MR1 限制性黏膜相关不变 T(MAIT)细胞是具有先天样特性和有限 TCR 多样性的αβ T 细胞亚群。MAIT 细胞因其对细菌和酵母物种的反应性而受到关注,这表明它们在防御病原微生物方面发挥作用。尽管对 MAIT 细胞生物学的理解取得了进展,但它们识别 MR1-Ag 复合物的能力背后的分子和结构基础尚不清楚。在这项研究中,我们展示了我们对 MAIT TCR 与 MR1 结合的结构和生化表征,MR1 呈递先前在鼠伤寒沙门氏菌中发现的大肠杆菌衍生的刺激性配体 rRL-6-CH2OH。我们显示出由于该配体的呈递,MAIT TCR 与 MR1 的结合明显增强。我们的 MAIT TCR/MR1/rRL-6-CH2OH 复合物结构显示出一种进化上保守的结合取向,CDR3α 和 CDR3β 环在识别 rRL-6-CH2OH 刺激性配体方面都发挥着明显的作用。我们还展示了另外两个具有异种反应性的 MAIT TCR/MR1 复合物,尽管 CDR2β 和 CDR3β 环序列存在差异,但它们重现了以前记录的对接取向。我们的数据支持这样一种模型,即 MAIT TCR 以保守的方式与 MR1 结合,其结合亲和力受 MR1 呈递的 Ag 性质或通过替代 Vβ 使用或 CDR3β 序列引入的多样性调节。