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Early life exposures shape the CD4+ T cell transcriptome influencing proliferation differentiation and mitochondrial dynamics later in life

机译:生命早期暴露会影响CD4 + T细胞转录组影响生命后期的增殖分化和线粒体动力学。

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摘要

Early life environmental exposures drive lasting changes to the function of the immune system and can contribute to disease later in life. One of the ways environmental factors act is through cellular receptors. The aryl hydrocarbon receptor (AHR) is expressed by immune cells and binds numerous xenobiotics. Early life exposure to chemicals that bind the AHR impairs CD4+ T cell responses to influenza A virus (IAV) infection in adulthood. However, the cellular mechanisms that underlie these durable changes remain poorly defined. Transcriptomic profiling of sorted CD4+ T cells identified changes in genes involved in proliferation, differentiation, and metabolic pathways were associated with triggering AHR during development. Functional bioassays confirmed that CD4+ T cells from infected developmentally exposed offspring exhibit reduced proliferation, differentiation, and cellular metabolism. Thus, developmental AHR activation shapes T cell responsive capacity later in life by affecting integrated cellular pathways, which collectively alter responses later in life. Given that coordinated shifts in T cell metabolism are essential for T cell responses to numerous challenges, and that humans are constantly exposed to many different types of AHR ligands, this has far-reaching implications for how AHR signaling, particularly during development, durably influences T cell mediated immune responses across the lifespan.
机译:生命早期暴露于环境中会导致免疫系统功能的持久变化,并可能在生命后期导致疾病。环境因素起作用的方式之一是通过细胞受体。芳基烃受体(AHR)由免疫细胞表达,并结合多种异生素。生命早期暴露于与AHR结合的化学物质会损害成年期CD4 + T细胞对A型流感病毒(IAV)感染的反应。但是,这些持久变化基础的细胞机制仍然定义不清。排序的CD4 + T细胞的转录组谱分析表明,参与增殖,分化和代谢途径的基因变化与发育过程中触发AHR相关。功能性生物测定证实,受感染的发育暴露的后代的CD4 + T细胞显示出增殖,分化和细胞代谢降低。因此,发育中的AHR激活会通过影响整合的细胞途径来改变生命后期的T细胞反应能力,从而综合改变生命后期的反应。鉴于T细胞代谢的协调变化对于T细胞应对众多挑战至关重要,并且人类不断暴露于许多不同类型的AHR配体,这对于AHR信号如何(特别是在发育过程中)如何持久影响T具有深远的意义。在整个生命周期中细胞介导的免疫反应。

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