下调和上调
磷酸化
细胞生物学
DNA修复
DNA
化疗
DNA损伤
生物
遗传学
基因
作者
Lianhui Sun,Xinyang Xu,Zhuqing Zhang,Dong Chang,Xiaoyu Zhang,Tongqing Zhang,Jieru Geng,Xiaoxia Zhang,Menghan Lin,Hu Chen,Ziqi Zhou,Mengxue Wang,Liu Cao,Mary Zhang,Baokun He,Shengping Zhang,Chuangui Wang
出处
期刊:Cell Reports
[Cell Press]
日期:2025-02-01
卷期号:44 (2): 115269-115269
被引量:1
标识
DOI:10.1016/j.celrep.2025.115269
摘要
Highlights•SIRT7 triggers microsatellite instability occurrence under DNA-damaging drug treatment•DNA-damaging drugs cause ATM kinase-dependent SIRT7 phosphorylation and redistribution•SIRT7 phosphorylation may serve as a predictive biomarker for chemotherapeutic efficacySummaryDrug resistance significantly limits the efficacy of chemotherapy. The DNA mismatch repair (MMR) system maintains genomic stability by correcting DNA errors. During DNA-damaging treatments, cancer cells transiently increase their adaptive mutability, also known as microsatellite instability (MSI), to evade therapeutic pressure through MMR downregulation, conferring drug resistance. However, an understanding of the underlying mechanisms of MMR protein downregulation under DNA-damaging drugs remains limited. Our study reveals a negative correlation between SIRT7 protein levels and MMR core protein MSH2 levels in cervical and lung cancer tissues. SIRT7 destabilizes MSH2, promoting MSI and mutagenesis. Molecularly, DNA damage triggers ATM kinase-dependent phosphorylation and subcellular redistribution of SIRT7. Phosphorylated SIRT7 interacts with and deacetylates MSH2, impairing MMR, and inducing MSI and drug resistance. Our findings suggest that SIRT7 drives MMR downregulation under therapeutic stress and that ATM-dependent phosphorylation of SIRT7 may serve as a predictive biomarker for chemotherapeutic efficacy and a target for cancer treatment.Graphical abstract
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