Center for Childhood Cancer & Blood Diseases, Hematology/Oncology & BMT, Abigail Wexner Research Institute at Nationwide Children's Hospital, Ohio State University, Columbus, OH, USA.
The Center for Cell and Gene Therapy, Baylor College of Medicine, Houston, TX, USA.
Nat Metab. 2020 Jul;2(7):635-647. doi: 10.1038/s42255-020-0219-4. Epub 2020 Jun 15.
T cells undergo metabolic rewiring to meet their bioenergetic, biosynthetic and redox demands following antigen stimulation. To fulfil these needs, effector T cells must adapt to fluctuations in environmental nutrient levels at sites of infection and inflammation. Here, we show that effector T cells can utilize inosine, as an alternative substrate, to support cell growth and function in the absence of glucose in vitro. T cells metabolize inosine into hypoxanthine and phosphorylated ribose by purine nucleoside phosphorylase. We demonstrate that the ribose subunit of inosine can enter into central metabolic pathways to provide ATP and biosynthetic precursors, and that cancer cells display diverse capacities to utilize inosine as a carbon source. Moreover, the supplementation with inosine enhances the anti-tumour efficacy of immune checkpoint blockade and adoptive T-cell transfer in solid tumours that are defective in metabolizing inosine, reflecting the capability of inosine to relieve tumour-imposed metabolic restrictions on T cells.
T 细胞在抗原刺激后会进行代谢重编程,以满足其能量代谢、生物合成和氧化还原需求。为了满足这些需求,效应 T 细胞必须适应感染和炎症部位环境营养水平的波动。在这里,我们表明效应 T 细胞可以利用肌苷作为替代底物,在体外缺乏葡萄糖的情况下支持细胞生长和功能。T 细胞通过嘌呤核苷磷酸化酶将肌苷代谢成次黄嘌呤和磷酸核糖。我们证明肌苷的核糖部分可以进入中心代谢途径,提供 ATP 和生物合成前体,并且癌细胞表现出利用肌苷作为碳源的不同能力。此外,补充肌苷可以增强免疫检查点阻断和过继性 T 细胞转移在固体肿瘤中的抗肿瘤疗效,这些肿瘤在代谢肌苷方面存在缺陷,反映了肌苷缓解肿瘤对 T 细胞施加的代谢限制的能力。