串扰
组蛋白
瓦博格效应
重编程
计算生物学
癌变
癌症
精密医学
癌症治疗
癌症研究
生物信息学
医学
生物
机制(生物学)
DNA损伤
从长凳到床边
代谢途径
癌症治疗
表观遗传学
临床试验
DNA修复
癌细胞
组蛋白脱乙酰基酶
肿瘤微环境
靶向治疗
治疗方法
作者
Wanghao Zhang,Guanglong Huang,Woheng Tang,Jiaxian Li,Jingxian Chen,Yaojiang Feng,Kaichen Li,Can Pan,Shangshi Li,Huayang Zhang,Rongxu Ye,Long Hao,Guozhong Yi
标识
DOI:10.1016/j.gendis.2025.101935
摘要
Lactylation, a type of post-translational modification (PTM) of proteins driven by cancer metabolic reprogramming, not only offers new perspectives on the Warburg effect but also has drawn increasing attention due to its critical roles in tumorigenesis and therapeutic resistance. Given its significant potential for precision cancer therapy, this review first integrates recent advancements in lactylation research by systematically summarizing newly identified lactylation writers, readers, and erasers, as well as their involvement in feedback loops and crosstalk with other modifications. Subsequently, we elaborate on how histone and non-histone lactylation contribute to both intrinsic and acquired resistance to radiotherapy, chemotherapy, targeted therapy, and immunotherapy. Key mechanisms encompass maintaining cancer stemness, enhancing DNA damage repair, reprogramming metabolic pathways, inhibiting ferroptosis, and promoting an immunosuppressive tumor microenvironment. Finally, we evaluate preclinical strategies targeting lactylation, including inhibition of lactate metabolic pathways and direct modulation of lactylation-modifying enzymes or lactylated proteins, while critically assessing mechanistic challenges and early-phase clinical trial outcomes. Our analysis establishes a theoretical framework and actionable roadmap for the development of lactylation-based precision therapies in oncology.
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