一种测量体内稀有细胞代谢的新方法揭示了肺T细胞对氧化磷酸化的高度依赖性。

IF 3.2 4区 医学 Q3 CELL BIOLOGY
Aristeidis Roubanis, Morgane Hilaire, Morgane Le Teuff, Odile Devergne, Tim Sparwasser, Luciana Berod, Benoît L Salomon
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引用次数: 0

摘要

细胞代谢的调节是控制T细胞命运和功能的核心因素。然而,由于实验的限制,对稀有细胞(如非淋巴组织T细胞)的体内代谢特性了解甚少。大多数测量细胞代谢的技术都需要大量的细胞。最近的SCENITH方法允许通过流式细胞术研究稀有细胞的代谢。然而,这种技术需要细胞分离和体外培养,这可能会改变它们的代谢。在这里,我们提出了一种新的实验方法,称为体内SCENITH,来研究T细胞在脾脏和肺部稳定状态下的细胞代谢。为此,我们直接在小鼠体内施用代谢调节剂,而不是像经典的SCENITH方法那样在体外施用这些试剂。尽管离体操作会影响T细胞的活力和表型,但在体内SCENITH中未观察到这种毒性作用。我们观察到常规T细胞和调节性T细胞具有相似的代谢谱。重要的是,脾脏T细胞同时使用氧化磷酸化和糖酵解,而肺部T细胞的代谢主要基于氧化磷酸化。最后,干扰蛋白质翻译和能量可用性的代谢抑制剂下调了调节性T细胞中Foxp3的表达。这些结果描述了SCENITH的扩展,允许测量体内稀有细胞的代谢谱,揭示了对肺T细胞氧化磷酸化的高度依赖。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new method to measure cell metabolism of rare cells in vivo reveals a high oxidative phosphorylation dependence of lung T cells.

Regulation of cellular metabolism is a central element governing the fate and function of T cells. However, the in vivo metabolic characteristics of rare cells, such as nonlymphoid tissue T cells, are poorly understood because of experimental limitations. Most techniques measuring cell metabolism require large cell numbers. The recent SCENITH method allows for studying the metabolism of rare cells by flow cytometry. However, this technique requires cells to be isolated and cultured ex vivo, which may alter their metabolism. Here, we propose a new experimental approach, called in vivo SCENITH, to investigate the cellular metabolism of T cells in vivo at a steady state in the spleen and lungs. For this purpose, we administered the metabolic modulators directly in mice, instead of applying these reagents ex vivo, as in the classical SCENITH method. Whereas ex vivo manipulation impacted the viability and phenotype of T cells, this toxic effect was not observed in the in vivo SCENITH. We observed that conventional and regulatory T cells shared similar metabolic profiles. Importantly, whereas spleen T cells used both oxidative phosphorylation and glycolysis, the metabolism of T cells in the lungs was mainly based on oxidative phosphorylation. Finally, metabolic inhibitors that interfere with protein translation and energy availability downregulated Foxp3 expression in regulatory T cells. These results describe an expansion of SCENITH that allows to measure the metabolic profile of rare cells in vivo, revealing a high dependence on oxidative phosphorylation of lung T cells.

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来源期刊
Immunology & Cell Biology
Immunology & Cell Biology 医学-免疫学
CiteScore
7.50
自引率
2.50%
发文量
98
审稿时长
4-8 weeks
期刊介绍: The Australasian Society for Immunology Incorporated (ASI) was created by the amalgamation in 1991 of the Australian Society for Immunology, formed in 1970, and the New Zealand Society for Immunology, formed in 1975. The aim of the Society is to encourage and support the discipline of immunology in the Australasian region. It is a broadly based Society, embracing clinical and experimental, cellular and molecular immunology in humans and animals. The Society provides a network for the exchange of information and for collaboration within Australia, New Zealand and overseas. ASI members have been prominent in advancing biological and medical research worldwide. We seek to encourage the study of immunology in Australia and New Zealand and are active in introducing young scientists to the discipline.
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