Nucleotides perform important metabolic functions, carrying energy and feeding nucleic acid synthesis. Here, we use isotope tracing-mass spectrometry to quantitate contributions to purine nucleotides from salvage versus de novo synthesis. We further explore the impact of augmenting a key precursor for purine synthesis, one-carbon (1C) units. We show that tumors and tumor-infiltrating TÂ cells (relative to splenic or lymph node TÂ cells) synthesize purines de novo. Shortage of 1C units for TÂ cell purine synthesis is accordingly a potential bottleneck for anti-tumor immunity. Supplementing 1C units by infusing formate drives formate assimilation into purines in tumor-infiltrating TÂ cells. Orally administered methanol functions as a formate pro-drug, with deuteration enabling kinetic control of formate production. Safe doses of methanol raise formate levels and augment anti-PD-1 checkpoint blockade in MC38 tumors, tripling durable regressions. Thus, 1C deficiency can gate antitumor immunity and this metabolic checkpoint can be overcome with pharmacological 1C supplementation.
One-carbon unit supplementation fuels purine synthesis in tumor-infiltrating TÂ cells and augments checkpoint blockade.
补充一碳单位可促进肿瘤浸润 T 细胞中的嘌呤合成,并增强检查点阻断作用
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作者:Xu Xincheng, Chen Zihong, Bartman Caroline R, Xing Xi, Olszewski Kellen, Rabinowitz Joshua D
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2024 | 起止号: | 2024 May 16; 31(5):932-943 |
| doi: | 10.1016/j.chembiol.2024.04.007 | 研究方向: | 肿瘤 |
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