The Francis Crick Institute, London, UK.
Namur Research Institute for Life Sciences (NARILIS), Molecular Physiology Unit (URPHYM), University of Namur, Namur, Belgium.
Nat Cancer. 2024 May;5(5):701-715. doi: 10.1038/s43018-024-00739-8. Epub 2024 May 2.
Metabolic changes contribute to cancer initiation and progression through effects on cancer cells, the tumor microenvironment and whole-body metabolism. Alterations in serine metabolism and the control of one-carbon cycles have emerged as critical for the development of many tumor types. In this Review, we focus on the mitochondrial folate cycle. We discuss recent evidence that, in addition to supporting nucleotide synthesis, mitochondrial folate metabolism also contributes to metastasis through support of antioxidant defense, mitochondrial protein synthesis and the overflow of excess formate. These observations offer potential therapeutic opportunities, including the modulation of formate metabolism through dietary interventions and the use of circulating folate cycle metabolites as biomarkers for cancer detection.
代谢变化通过对癌细胞、肿瘤微环境和全身代谢的影响,促进癌症的发生和发展。丝氨酸代谢的改变和一碳循环的控制,已成为许多肿瘤类型发展的关键。在这篇综述中,我们专注于线粒体叶酸循环。我们讨论了最近的证据,除了支持核苷酸合成外,线粒体叶酸代谢还通过支持抗氧化防御、线粒体蛋白质合成和多余甲酸盐的溢出,促进转移。这些观察结果提供了潜在的治疗机会,包括通过饮食干预调节甲酸盐代谢和使用循环叶酸代谢物作为癌症检测的生物标志物。