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一个用于微生物组调节 γδ17 细胞的二元模块,其特征是微生物组驱动程序性细胞死亡蛋白 1 的表达。

A binary module for microbiota-mediated regulation of γδ17 cells, hallmarked by microbiota-driven expression of programmed cell death protein 1.

机构信息

Department of Pathology, Division of Microbiology and Immunology, University of Utah, Salt Lake City, UT 84112, USA.

Department of Immunology, Duke University Medical Center, Durham, NC 27710, USA.

出版信息

Cell Rep. 2023 Aug 29;42(8):112951. doi: 10.1016/j.celrep.2023.112951. Epub 2023 Aug 8.

Abstract

Little is known about how microbiota regulate innate-like γδ T cells or how these restrict their effector functions within mucosal barriers, where microbiota provide chronic stimulation. Here, we show that microbiota-mediated regulation of γδ17 cells is binary, where microbiota instruct in situ interleukin-17 (IL-17) production and concomitant expression of the inhibitory receptor programmed cell death protein 1 (PD-1). Microbiota-driven expression of PD-1 and IL-17 and preferential adoption of a PD-1 phenotype are conserved for γδ17 cells across multiple mucosal barriers. Importantly, microbiota-driven PD-1 inhibits in situ IL-17 production by mucosa-resident γδ17 effectors, linking microbiota to their simultaneous activation and suppression. We further show the dynamic nature of this microbiota-driven module and define an inflammation-associated activation state for γδ17 cells marked by augmented PD-1, IL-17, and lipid uptake, thus linking the microbiota to dynamic subset-specific activation and metabolic remodeling to support γδ17 effector functions in a microbiota-dense tissue environment.

摘要

关于微生物组如何调节先天样 γδ T 细胞,以及这些细胞如何在微生物组提供慢性刺激的黏膜屏障内限制其效应功能,目前知之甚少。在这里,我们表明,微生物组介导的 γδ17 细胞调节是二元的,其中微生物组指导原位白细胞介素 17(IL-17)的产生以及同时表达抑制性受体程序性细胞死亡蛋白 1(PD-1)。微生物组驱动的 PD-1 和 IL-17 的表达以及 PD-1 表型的优先采用,对于跨多个黏膜屏障的 γδ17 细胞是保守的。重要的是,微生物组驱动的 PD-1 抑制了黏膜驻留的 γδ17 效应物的原位 IL-17 产生,将微生物组与其同时的激活和抑制联系起来。我们进一步展示了这个微生物组驱动模块的动态性质,并定义了一个与炎症相关的 γδ17 细胞激活状态,其特征是增强的 PD-1、IL-17 和脂质摄取,从而将微生物组与动态的亚群特异性激活和代谢重塑联系起来,以支持 γδ17 效应物在微生物组密集的组织环境中的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f71d/10588736/ddab4fc6bd59/nihms-1928280-f0002.jpg

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