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首页> 外文期刊>Nature Communications >PD-1 alters T-cell metabolic reprogramming by inhibiting glycolysis and promoting lipolysis and fatty acid oxidation
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PD-1 alters T-cell metabolic reprogramming by inhibiting glycolysis and promoting lipolysis and fatty acid oxidation

机译:PD-1通过抑制糖酵解并促进脂解和脂肪酸氧化来改变T细胞代谢重编程

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摘要

During activation, T cells undergo metabolic reprogramming, which imprints distinct functional fates. We determined that on PD-1 ligation, activated T cells are unable to engage in glycolysis or amino acid metabolism but have an increased rate of fatty acid beta-oxidation (FAO). PD-1 promotes FAO of endogenous lipids by increasing expression of CPT1A, and inducing lipolysis as indicated by elevation of the lipase ATGL, the lipolysis marker glycerol and release of fatty acids. Conversely, CTLA-4 inhibits glycolysis without augmenting FAO, suggesting that CTLA-4 sustains the metabolic profile of non-activated cells. Because T cells utilize glycolysis during differentiation to effectors, our findings reveal a metabolic mechanism responsible for PD-1-mediated blockade of T-effector cell differentiation. The enhancement of FAO provides a mechanistic explanation for the longevity of T cells receiving PD-1 signals in patients with chronic infections and cancer, and for their capacity to be reinvigorated by PD-1 blockade.
机译:在激活过程中,T细胞经历了代谢重编程,从而印记了不同的功能命运。我们确定在PD-1的连接上,活化的T细胞无法参与糖酵解或氨基酸代谢,但脂肪酸β-氧化(FAO)的速率增加。 PD-1通过增加CPT1A的表达并诱导脂解来促进内源性脂质的FAO形成,如脂肪酶ATGL,脂解标记甘油和脂肪酸释放的升高所表明的。相反,CTLA-4抑制糖酵解而不增加FAO,这表明CTLA-4维持了未激活细胞的代谢特性。由于T细胞在分化为效应子的过程中利用糖酵解作用,因此我们的发现揭示了一种新的代谢机制,该机制负责PD-1介导的T效应细胞分化的阻断。粮农组织的加强为患有慢性感染和癌症的患者中接受PD-1信号的T细胞的寿命长,以及通过PD-1阻滞恢复活力的能力提供了机械解释。

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