表观遗传学
重编程
癌症
生物
DNA损伤
癌细胞
DNA修复
癌症表观遗传学
乳腺癌
表观遗传疗法
DNA甲基化
癌症研究
后生
生物信息学
遗传学
DNA
细胞
基因
基因表达
组蛋白甲基转移酶
作者
Chandrima Das,Swagata Adhikari,Apoorva Bhattacharya,Sanjukta Chakraborty,Payel Mondal,Shalini S. Yadav,Santanu Adhikary,Clayton R. Hunt,Kamlesh K Yadav,Shruti Pandita,Siddhartha Roy,John A. Tainer,Zamal Ahmed,Tej K. Pandita
出处
期刊:Cancer Research
[American Association for Cancer Research]
日期:2023-01-18
卷期号:83 (5): 657-666
被引量:4
标识
DOI:10.1158/0008-5472.can-22-3015
摘要
Abstract Therapy resistance is imposing a daunting challenge on effective clinical management of breast cancer. Although the development of resistance to drugs is multifaceted, reprogramming of energy metabolism pathways is emerging as a central but heterogenous regulator of this therapeutic challenge. Metabolic heterogeneity in cancer cells is intricately associated with alterations of different signaling networks and activation of DNA damage response pathways. Here we consider how the dynamic metabolic milieu of cancer cells regulates their DNA damage repair ability to ultimately contribute to development of therapy resistance. Diverse epigenetic regulators are crucial in remodeling the metabolic landscape of cancer. This epigenetic–metabolic interplay profoundly affects genomic stability of the cancer cells as well as their resistance to genotoxic therapies. These observations identify defining mechanisms of cancer epigenetics–metabolism–DNA repair axis that can be critical for devising novel, targeted therapeutic approaches that could sensitize cancer cells to conventional treatment strategies.
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