乳酸脱氢酶A
癌症研究
乳酸脱氢酶
CD8型
细胞因子
细胞毒性T细胞
干细胞
细胞生物学
免疫系统
生物
免疫学
分子生物学
生物化学
酶
体外
作者
Dalton Hermans,Sanjivan Gautam,Juan Carlos García‐Cañaveras,Daniel Gromer,Suman Mitra,Rosanne Spolski,Peng Li,Stephen M. Christensen,Rosa Nguyen,Jian-Xin Lin,Jangsuk Oh,Ning Du,Sharon Veenbergen,Jessica Fioravanti,Risa Ebina‐Shibuya,Christopher K. E. Bleck,Len Neckers,Joshua D. Rabinowitz,Luca Gattinoni,Warren J. Leonard
标识
DOI:10.1073/pnas.1920413117
摘要
Interleukin (IL)-2 and IL-21 dichotomously shape CD8+ T cell differentiation. IL-2 drives terminal differentiation, generating cells that are poorly effective against tumors, whereas IL-21 promotes stem cell memory T cells (TSCM) and antitumor responses. Here we investigated the role of metabolic programming in the developmental differences induced by these cytokines. IL-2 promoted effector-like metabolism and aerobic glycolysis, robustly inducing lactate dehydrogenase (LDH) and lactate production, whereas IL-21 maintained a metabolically quiescent state dependent on oxidative phosphorylation. LDH inhibition rewired IL-2-induced effects, promoting pyruvate entry into the tricarboxylic acid cycle and inhibiting terminal effector and exhaustion programs, including mRNA expression of members of the NR4A family of nuclear receptors, as well as Prdm1 and Xbp1 While deletion of Ldha prevented development of cells with antitumor effector function, transient LDH inhibition enhanced the generation of memory cells capable of triggering robust antitumor responses after adoptive transfer. LDH inhibition did not significantly affect IL-21-induced metabolism but caused major transcriptomic changes, including the suppression of IL-21-induced exhaustion markers LAG3, PD1, 2B4, and TIM3. LDH inhibition combined with IL-21 increased the formation of TSCM cells, resulting in more profound antitumor responses and prolonged host survival. These findings indicate a pivotal role for LDH in modulating cytokine-mediated T cell differentiation and underscore the therapeutic potential of transiently inhibiting LDH during adoptive T cell-based immunotherapy, with an unanticipated cooperative antitumor effect of LDH inhibition and IL-21.
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