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黏膜相关恒定T(MAIT)细胞的激活受微生物多样性和核黄素利用的影响。

The Activation of Mucosal-Associated Invariant T (MAIT) Cells Is Affected by Microbial Diversity and Riboflavin Utilization .

作者信息

Krause Jannike L, Schäpe Stephanie S, Schattenberg Florian, Müller Susann, Ackermann Grit, Rolle-Kampczyk Ulrike E, Jehmlich Nico, Pierzchalski Arkadiusz, von Bergen Martin, Herberth Gunda

机构信息

Department of Environmental Immunology, Helmholtz-Centre for Environmental Research - UFZ Leipzig, Germany.

Department of Molecular Systems Biology, Helmholtz-Centre for Environmental Research - UFZ, Leipzig, Germany.

出版信息

Front Microbiol. 2020 Apr 22;11:755. doi: 10.3389/fmicb.2020.00755. eCollection 2020.

Abstract

Recent research has demonstrated that MAIT cells are activated by individual bacterial or yeasts species that possess the riboflavin biosynthesis pathway. However, little is known about the MAIT cell activating potential of microbial communities and the contribution of individual community members. Here, we analyze the MAIT cell activating potential of a human intestinal model community (SIHUMIx) as well as intestinal microbiota after bioreactor cultivation. We determined the contribution of individual SIHUMIx community members to the MAIT cell activating potential and investigated whether microbial stress can influence their MAIT cell activating potential. The MAIT cell activating potential of SIHUMIx was directly related to the relative species abundances in the community. We therefore suggest an additive relationship between the species abundances and their MAIT cell activating potential. In diverse microbial communities, we found that a low MAIT cell activating potential was associated with high microbial diversity and a high level of riboflavin demand and vice versa. We suggest that microbial diversity might affect MAIT cell activation via riboflavin utilization within the community. Microbial acid stress significantly reduced the MAIT cell activating potential of SIHUMIx by impairing riboflavin availability through increasing the riboflavin demand. We show that MAIT cells can perceive microbial stress due to changes in riboflavin utilization and that riboflavin availability might also play a central role for the MAIT cell activating potential of diverse microbiota.

摘要

最近的研究表明,黏膜相关恒定T细胞(MAIT细胞)可被具有核黄素生物合成途径的单个细菌或酵母物种激活。然而,对于微生物群落激活MAIT细胞的潜力以及单个群落成员的作用,我们却知之甚少。在此,我们分析了人类肠道模型群落(SIHUMIx)以及生物反应器培养后的肠道微生物群激活MAIT细胞的潜力。我们确定了SIHUMIx群落中单个成员对激活MAIT细胞潜力的贡献,并研究了微生物应激是否会影响它们激活MAIT细胞的潜力。SIHUMIx激活MAIT细胞的潜力与群落中相对物种丰度直接相关。因此,我们认为物种丰度与其激活MAIT细胞的潜力之间存在累加关系。在不同的微生物群落中,我们发现激活MAIT细胞的潜力较低与微生物多样性较高以及核黄素需求量较高有关,反之亦然。我们认为微生物多样性可能通过群落内核黄素的利用来影响MAIT细胞的激活。微生物酸应激通过增加核黄素需求从而损害核黄素的可利用性,显著降低了SIHUMIx激活MAIT细胞的潜力。我们表明,MAIT细胞可因核黄素利用的变化而感知微生物应激,并且核黄素的可利用性可能在不同微生物群激活MAIT细胞的潜力方面也起着核心作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68c9/7189812/3aab79860e8e/fmicb-11-00755-g001.jpg

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