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mTORCl couples immune signals and metabolic programming to establish T_(reg)-cell function

机译:mTORC1将免疫信号与代谢程序耦合以建立T_(reg)细胞功能

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摘要

The mechanistic target of rapamydn (mTOR) pathway integrates diverse environmental inputs, including immune signals and metabolic cues, to direct T-cell fate decisions. The activation of mTOR, which is the catalytic subunit of the mTORCl and mTORC2 complexes, delivers an obligatory signal for the proper activation and differentiation of effector CD4~+ T cells, whereas in the regulatory T-cell (T_(reg)) compartment, the Akt-mTOR axis is widely acknowledged as a crucial negative regulator of T_(reg)-cell de novo differentiation and population expansion. However, whether mTOR signalling affects the homeostasis and function of T_(reg) cells remains largely unexplored. Here we show that mTORC1 signalling is a pivotal positive determinant of T_(reg)-cell function in mice. T_(reg) cells have elevated steady-state mTORC1 activity compared to naive T cells. Signals through the T-cell antigen receptor (TCR) and interleukin-2 (IL-2) provide major inputs for mTORC1 activation, which in turn programs the suppressive function of T_(reg) cells. Disruption of mTORC1 through T_(reg)-specific deletion of the essential component raptor leads to a profound loss of T_(reg)-cell suppressive activity in vivo and the development of a fatal early onset inflammatory disorder. Mechanistically, raptor/mTORC1 signalling in T_(reg) cells promotes cholesterol and lipid metabolism, with the mevalonate pathway particularly important for coordinating Treg-cell proliferation and upregulation of the suppressive molecules CTLA4 and ICOS to establish T_(reg)-cell functional competency. By contrast, mTORC1 does not directly affect the expression of Foxp3 or anti- and pro-inflammatory cytokines in T_(reg) cells, suggesting a non-conventional mechanism for T_(reg)-cell functional regulation. Finally, we provide evidence that mTORC1 maintains T_(reg)-cell function partly through inhibiting the mTORC2 pathway. Our results demonstrate that mTORC1 acts as a fundamental 'rheostat' in T_(reg) cells to link immunological signals from TCR and IL-2 to lipogenic pathways and functional fitness, and highlight a central role of metabolic programming of T_(reg)-cell suppressive activity in immune homeostasis and tolerance.
机译:rapamydn(mTOR)通路的机械目标整合了各种环境输入,包括免疫信号和代谢线索,以指导T细胞的命运决定。 mTOR的激活是mTORC1和mTORC2复合物的催化亚基,可传递一个信号来正确激活和分化效应CD4〜+ T细胞,而在调节性T细胞(T_(reg))区室, Akt-mTOR轴被公认为是T_(reg)细胞从头分化和种群扩张的关键负调控因子。但是,mTOR信号传导是否会影响T_(reg)细胞的稳态和功能尚待很大程度上探讨。在这里,我们显示mTORC1信号是小鼠T_(reg)细胞功能的关键阳性决定因素。与原始T细胞相比,T_reg细胞的稳态mTORC1活性升高。通过T细胞抗原受体(TCR)和白介素2(IL-2)的信号为mTORC1激活提供了主要输入,而mTORC1激活又可对T_(reg)细胞的抑制功能进行编程。通过必需成分猛禽的T_(reg)特异性缺失破坏mTORC1会导致体内T_(reg)细胞抑制活性的严重丧失,并导致致命的早期发作性炎症。从机制上讲,T_(reg)细胞中的猛禽/ mTORC1信号传导可促进胆固醇和脂质代谢,甲羟戊酸途径对于协调Treg-细胞增殖以及抑制分子CTLA4和ICOS的上调以建立T_(reg)-细胞功能能力特别重要。相比之下,mTORC1不会直接影响T_(reg)细胞中Foxp3或抗炎和促炎细胞因子的表达,提示T_(reg)细胞功能调节的非常规机制。最后,我们提供证据表明mTORC1部分通过抑制mTORC2途径维持T_(reg)细胞功能。我们的结果表明,mTORC1在T_(reg)细胞中起基本的“变阻器”作用,将来自TCR和IL-2的免疫信号与脂肪生成途径和功能适应性联系起来,并突出了T_(reg)细胞代谢程序设计的核心作用免疫稳态和耐受性的抑制活性。

著录项

  • 来源
    《Nature》 |2013年第7459期|485-490|共6页
  • 作者单位

    Department of Immunology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA;

    Department of Immunology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA;

    Department of Immunology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA;

    Hartwell Center for Bioinformatics and Biotechnology, St Jude Children's Research Hospital,Memphis, Tennessee 38105, USA;

    Department of Pathology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA;

    Department of Immunology, St Jude Children's Research Hospital, Memphis, Tennessee 38105, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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