Department of Immunometabolism, Max Planck Institute of Immunobiology and Epigenetics, Freiburg 79108, Germany; email:
Annu Rev Immunol. 2018 Apr 26;36:461-488. doi: 10.1146/annurev-immunol-042617-053019.
Metabolism drives function, on both an organismal and a cellular level. In T cell biology, metabolic remodeling is intrinsically linked to cellular development, activation, function, differentiation, and survival. After naive T cells are activated, increased demands for metabolic currency in the form of ATP, as well as biomass for cell growth, proliferation, and the production of effector molecules, are met by rewiring cellular metabolism. Consequently, pharmacological strategies are being developed to perturb or enhance selective metabolic processes that are skewed in immune-related pathologies. Here we review the most recent advances describing the metabolic changes that occur during the T cell lifecycle. We discuss how T cell metabolism can have profound effects on health and disease and where it might be a promising target to treat a variety of pathologies.
代谢在机体和细胞水平上驱动着功能。在 T 细胞生物学中,代谢重塑与细胞发育、激活、功能、分化和存活内在相关。在幼稚 T 细胞被激活后,以 ATP 形式和细胞生长、增殖以及效应分子产生所需的生物量的形式,对代谢货币的需求增加,这是通过重新布线细胞代谢来满足的。因此,正在开发药理学策略来扰乱或增强在与免疫相关的病理中发生的选择性代谢过程。在这里,我们回顾了描述 T 细胞生命周期中发生的代谢变化的最新进展。我们讨论了 T 细胞代谢如何对健康和疾病产生深远影响,以及它可能成为治疗各种病理的有前途的靶点。