细胞生长
癌细胞
糖酵解
柠檬酸循环
ATP柠檬酸裂解酶
癌症研究
脂质代谢
衰老
生物
癌症
瓦博格效应
化学
细胞生物学
新陈代谢
生物化学
柠檬酸合酶
酶
遗传学
作者
Yangjing Zhao,Xia Liu,Fusheng Si,Lan Huang,Aiqin Gao,Wenli Lin,Daniel F. Hoft,Qixiang Shao,Guangyong Peng
标识
DOI:10.1002/advs.202101553
摘要
Abstract Metabolic disorder is one of the hallmarks of cancers, and reprogramming of metabolism is becoming a novel strategy for cancer treatment. Citrate is a key metabolite and critical metabolic regulator linking glycolysis and lipid metabolism in cellular energy homeostasis. Here it is reported that citrate treatment (both sodium citrate and citric acid) significantly suppresses tumor cell proliferation and growth in various tumor types. Mechanistically, citrate promotes excessive lipid biosynthesis and induces disruption of lipid metabolism in tumor cells, resulting in tumor cell senescence and growth inhibition. Furthermore, ATM‐associated DNA damage response cooperates with MAPK and mTOR signaling pathways to control citrate‐induced tumor cell growth arrest and senescence. In vivo studies further demonstrate that citrate administration dramatically inhibits tumor growth and progression in a colon cancer xenograft model. Importantly, citrate administration combined with the conventional chemotherapy drugs exhibits synergistic antitumor effects in vivo in the colon cancer models. These results clearly indicate that citrate can reprogram lipid metabolism and cell fate in cancer cells, and targeting citrate can be a promising therapeutic strategy for tumor treatment.
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