首页> 美国卫生研究院文献>PLoS Biology >mTORC1 in Thymic Epithelial Cells Is Critical for Thymopoiesis T-Cell Generation and Temporal Control of γδT17 Development and TCRγ/δ Recombination
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mTORC1 in Thymic Epithelial Cells Is Critical for Thymopoiesis T-Cell Generation and Temporal Control of γδT17 Development and TCRγ/δ Recombination

机译:胸腺上皮细胞中的mTORC1对于胸腺生成T细胞生成以及γδT17发育和TCRγ/δ重组的时间控制至关重要

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摘要

Thymus is crucial for generation of a diverse repertoire of T cells essential for adaptive immunity. Although thymic epithelial cells (TECs) are crucial for thymopoiesis and T cell generation, how TEC development and function are controlled is poorly understood. We report here that mTOR complex 1 (mTORC1) in TECs plays critical roles in thymopoiesis and thymus function. Acute deletion of mTORC1 in adult mice caused severe thymic involution. TEC-specific deficiency of mTORC1 (mTORC1KO) impaired TEC maturation and function such as decreased expression of thymotropic chemokines, decreased medullary TEC to cortical TEC ratios, and altered thymic architecture, leading to severe thymic atrophy, reduced recruitment of early thymic progenitors, and impaired development of virtually all T-cell lineages. Strikingly, temporal control of IL-17-producing γδT (γδT17) cell differentiation and TCRVγ/δ recombination in fetal thymus is lost in mTORC1KO thymus, leading to elevated γδT17 differentiation and rearranging of fetal specific TCRVγ/δ in adulthood. Thus, mTORC1 is central for TEC development/function and establishment of thymic environment for proper T cell development, and modulating mTORC1 activity can be a strategy for preventing thymic involution/atrophy.
机译:胸腺对于产生适应性免疫所必需的各种T细胞至关重要。尽管胸腺上皮细胞(TECs)对于胸腺生成和T细胞的生成至关重要,但是如何控制TEC的发育和功能却知之甚少。我们在这里报告,TECs中的mTOR复合物1(mTORC1)在胸腺生成和胸腺功能中起关键作用。成年小鼠中mTORC1的急性删除导致严重的胸腺退化。 TEC特异的mTORC1(mTORC1KO)缺陷会损害TEC成熟和功能,例如促甲状腺激素趋化因子的表达降低,髓质TEC与皮质TEC比率降低以及胸腺结构改变,从而导致严重的胸腺萎缩,早期胸腺祖细胞募集减少以及受损。几乎所有T细胞谱系的发育。令人惊讶的是,mTORC1KO胸腺失去了在胎儿胸腺中产生IL-17的γδT(γδT17)细胞分化和TCRVγ/δ重组的时间控制,导致γδT17分化升高和成年胎儿特异性TCRVγ/δ重新排列。因此,mTORC1对于TEC的发展/功能和建立适当的T细胞发育的胸腺环境至关重要,调节mTORC1的活性可能是预防胸腺退化/萎缩的策略。

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