调节器
串扰
程序性细胞死亡
癌症研究
生物
细胞生物学
疾病
组蛋白
主调节器
生物信息学
细胞
自噬
下调和上调
抗药性
医学
计算生物学
负调节器
信号转导
细胞生长
细胞凋亡
免疫学
基因表达调控
作者
Yu Wang,JINXIA CHEN,Yu Wang,Yuwei Cao,Yulin Li,Y. Zhu,Zhe Zhang,Shuang Wu,Hongquan Wang
摘要
Lactylation, a lactate-derived post-translational modification, emerges as a master metabolic regulator of resistance to regulated cell death (RCD) across pathologies including cancer, inflammatory disorders, and degenerative diseases. By dynamically modifying histones and non-histone proteins via lactyltransferases and delactylases, lactylation orchestrates convergent molecular pathways that suppress ferroptosis, cuproptosis, and apoptosis. This review synthesizes current understanding of lactylation as a central regulator of RCD resistance in diseases, especially in cancers. We dissect the molecular machinery through which lactylation subverts ferroptosis, cuproptosis, and apoptosis; evaluate its pathophysiological implications in diverse pathologies; and discuss emerging therapeutic strategies to disrupt lactylation-mediated cell death evasion. This metabolic-epigenetic crosstalk establishes a robust shield against RCD in disease microenvironments, promoting therapeutic resistance and pathological resilience. Targeting lactylation regulators (writers/erasers) or combining lactate modulation with RCD inducers represents a promising strategy to overcome treatment-refractory conditions in cancers.
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