DNA损伤
下调和上调
程序性细胞死亡
细胞凋亡
癌症研究
细胞生长
β氧化
细胞
生物
细胞生物学
过氧化物酶体增殖物激活受体
受体
基因
新陈代谢
DNA
内分泌学
生物化学
作者
Sun-Mi Hwang,Seungyeon Yang,Kyungsoo Park,Byung-Joo Kim,Minjoong Kim,Seungmin Shin,Ahyoung Yoo,Jiyun Ahn,Juneil Jang,Yeong Shin Yim,Rho Hyun Seong,Seung Min Jeong
标识
DOI:10.1002/advs.202304702
摘要
The DNA damage response is essential for preserving genome integrity and eliminating damaged cells. Although cellular metabolism plays a central role in cell fate decision between proliferation, survival, or death, the metabolic response to DNA damage remains largely obscure. Here, this work shows that DNA damage induces fatty acid oxidation (FAO), which is required for DNA damage-induced cell death. Mechanistically, FAO induction increases cellular acetyl-CoA levels and promotes N-alpha-acetylation of caspase-2, leading to cell death. Whereas chemotherapy increases FAO related genes through peroxisome proliferator-activated receptor α (PPARα), accelerated hypoxia-inducible factor-1α stabilization by tumor cells in obese mice impedes the upregulation of FAO, which contributes to its chemoresistance. Finally, this work finds that improving FAO by PPARα activation ameliorates obesity-driven chemoresistance and enhances the outcomes of chemotherapy in obese mice. These findings reveal the shift toward FAO induction is an important metabolic response to DNA damage and may provide effective therapeutic strategies for cancer patients with obesity.
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