Institute of Ecology and Genetics of Microorganisms, Perm Federal Research Center, Ural Branch of the Russian Academy of Sciences, 614081, Perm, Russia.
Biochemistry (Mosc). 2023 Nov;88(11):1857-1873. doi: 10.1134/S0006297923110159.
T cells demonstrate high degree of complexity and broad range of functions, which distinguish them from other immune cells. Throughout their lifetime, T lymphocytes experience several functional states: quiescence, activation, proliferation, differentiation, performance of effector and regulatory functions, memory formation, and apoptosis. Metabolism supports all functions of T cells, providing lymphocytes with energy, biosynthetic substrates, and signaling molecules. Therefore, T cells usually restructure their metabolism as they transition from one functional state to another. Strong association between the metabolism and T cell functions implies that the immune response can be controlled by manipulating metabolic processes within T lymphocytes. This review aims to highlight the main metabolic adaptations necessary for the T cell function, as well as the recent progress in techniques to modulate metabolic features of lymphocytes.
T 细胞表现出高度的复杂性和广泛的功能,这使它们与其他免疫细胞区分开来。在其整个生命周期中,T 淋巴细胞经历几种功能状态:静止、激活、增殖、分化、效应和调节功能的执行、记忆形成和凋亡。代谢支持 T 细胞的所有功能,为淋巴细胞提供能量、生物合成底物和信号分子。因此,T 细胞通常在从一种功能状态转变为另一种功能状态时重构其代谢。代谢与 T 细胞功能之间的紧密关联表明,可以通过操纵 T 淋巴细胞内的代谢过程来控制免疫反应。本综述旨在强调 T 细胞功能所需的主要代谢适应性,以及最近在调节淋巴细胞代谢特征的技术方面的进展。