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Rethinking the paradigm: How comparative studies on fatty acid oxidation inform our understanding of T cell metabolism

机译:重新思考范式:脂肪酸氧化的比较研究如何了解我们对T细胞新陈代谢的理解

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The classic paradigm of T cell metabolism posits that activated T-eff cells utilize glycolysis to keep pace with increased energetic demands, while resting and T-mem cells rely on the oxidation of fat. In contrast, T-eff cells during graft-versus-host disease (GVHD) increase their reliance on oxidative metabolism and, in particular, on fatty acid oxidation (FAO). To explore the potential mechanisms driving adoption of this alternative metabolism, we first review key pathways regulating FAO across a variety of disparate tissue types, including liver, heart, and skeletal muscle. Based upon these comparative studies, we then outline a consensus network of transcriptional and signaling pathways that predict a model for regulating FAO in T-eff cells during GVHD. This model raises important implications about the dynamic nature of metabolic reprogramming in T cells and suggests exciting future directions for further study of in vivo T cell metabolism. (C) 2015 Elsevier Ltd. All rights reserved.
机译:活化T-exf细胞的T细胞代谢物理的经典范式利用糖酵解来保持速度提高能量需求,同时休息和T-MEM细胞依赖于脂肪的氧化。相反,移植物与宿主疾病(GVHD)期间的T-EFF细胞增加了它们对氧化代谢的依赖,特别是脂肪酸氧化(粮农组织)。为了探讨推动采用这种替代新陈代谢的潜在机制,我们首先审查调节粮农组织的关键途径,跨各种不同的组织类型,包括肝脏,心脏和骨骼肌。基于这些比较研究,我们概述了转录和信号通路的共识网络,其在GVHD期间预测粮农组织中粮农组织的模型。该模型提出了对T细胞中代谢重编程的动态性质的重要意义,并提出了令人兴奋的未来方向,以进一步研究体内T细胞代谢。 (c)2015 Elsevier Ltd.保留所有权利。

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