重编程
癌变
表观遗传学
染色质
糖酵解
细胞生物学
生物
后生
癌细胞
组蛋白
癌症
细胞
生物化学
新陈代谢
DNA
DNA甲基化
遗传学
基因
基因表达
作者
Ting Wang,Ye Zeng,Zheng Li,Desheng Jing,Guixiong Fan,Mengqi Liu,Qifeng Zhuo,Shunrong Ji,Xianjun Yu,Xiaowu Xu,Yi Qin
摘要
Lactate is not only an endpoint of glycolysis but is gradually being discovered to play the role of a universal metabolic fuel for energy via the 'lactate shuttle' moving between cells and transmitting signals. The glycolytic-dependent metabolism found in tumours and fast-growing cells has made lactate a pivotal player in energy metabolism reprogramming, which enables cells to obtain abundant energy in a short time. Moreover, lactate can provide favourable conditions for tumorigenesis by shaping the acidic tumour microenvironment, recruiting immune cells, etc. and the recently discovered lactate-induced lactylation moves even further on pro-tumorigenesis mechanisms of lactate production, circulation and utilization. As with other epigenetic modifications, lactylation can modify histone proteins to alter the spatial configuration of chromatin, affect DNA accessibility and regulate the expression of corresponding genes. What's more, the degree of lactylation is inseparable from the spatialized lactate concentration, which builds a bridge between epigenetics and metabolic reprogramming. Here, we review the important role of lactate in energy reprogramming, summarize the latest finding of lactylation in tumorigenesis and try to explore therapeutic strategies in oncotherapy that can kill two birds with one stone.
科研通智能强力驱动
Strongly Powered by AbleSci AI