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Regulation of T-cell survival and mitochondrial homeostasis by TSC1.

机译:调节t细胞生存和线粒体由TSC1体内平衡。

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摘要

The mammalian target of rapamycin (mTOR) is a key regulator of cell growth and metabolism. It associates with multiple proteins and forms two distinct signaling complexes, mTORC1 and mTORC2. Accumulating evidence has revealed critical roles for intact mTOR signaling during T-cell activation and responses to microbial infection. However, the importance of mTOR regulation in T cells has yet to be explored. The TSC1/TSC2 complex has been shown to inhibit mTORC1 signaling in cell line models. We show here that deletion of TSC1 in the murine T-cell lineage results in a dramatic reduction of the peripheral T-cell pool, correlating with increased cell death. While mTORC1 is constitutively activated, mTORC2 signaling, reflected by Akt phosphorylation and activity, is decreased in TSC1-deficient T cells. Furthermore, TSC1-deficient T cells contain elevated reactive oxygen species (ROS) and exhibit decreased mitochondrial content and membrane potential, which is correlated with the activation of the intrinsic death pathway. Overall, our results demonstrate that TSC1 differentially regulates mTORC1 and mTORC2 activity, promotes T-cell survival, and is critical for normal mitochondrial homeostasis in T cells.
机译:哺乳动物雷帕霉素靶(mTOR)是一个关键监管机构的细胞生长和新陈代谢。同事与多个蛋白质和两种形式不同的信号复合体,mTORC1 mTORC2。越来越多的证据显示关键的角色在t细胞的完整mTOR信号激活和微生物感染的反应。然而,在T mTOR监管的重要性细胞还有待探索。复杂的可以抑制mTORC1信号在细胞模型。删除TSC1小鼠t细胞谱系结果在外围的一个戏剧性的减少t细胞池,与细胞的增加相关死亡。一种蛋白激酶mTORC2信号反射磷酸化和活动,却降低了TSC1-deficient T细胞。TSC1-deficient T细胞含有活性升高氧物种(ROS)和展览减少线粒体内容和膜电位,相关的激活是哪一个内在死亡通路。证明TSC1不同调节mTORC1和mTORC2活动,促进t细胞为正常的生存,是至关重要的在T细胞线粒体内稳态。

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