生物
基因组不稳定性
解旋酶
DNA损伤
有丝分裂
微卫星不稳定性
癌症
癌症研究
程序性细胞死亡
细胞生物学
癌细胞
遗传学
DNA
基因
细胞凋亡
核糖核酸
等位基因
微卫星
作者
Dali Zong,Natasha C. Koussa,James A. Cornwell,Ajith V. Pankajam,Michael J. Kruhlak,Nancy Wong,Raj Chari,Steven D. Cappell,André Nussenzweig
出处
期刊:Genes & Development
[Cold Spring Harbor Laboratory Press]
日期:2023-10-01
卷期号:37 (19-20): 913-928
被引量:12
标识
DOI:10.1101/gad.351085.123
摘要
Addiction to the WRN helicase is a unique vulnerability of human cancers with high levels of microsatellite instability (MSI-H). However, while prolonged loss of WRN ultimately leads to cell death, little is known about how MSI-H cancers initially respond to acute loss of WRN—knowledge that would be helpful for informing clinical development of WRN targeting therapy, predicting possible resistance mechanisms, and identifying useful biomarkers of successful WRN inhibition. Here, we report the construction of an inducible ligand-mediated degradation system in which the stability of endogenous WRN protein can be rapidly and specifically tuned, enabling us to track the complete sequence of cellular events elicited by acute loss of WRN function. We found that WRN degradation leads to immediate accrual of DNA damage in a replication-dependent manner that curiously did not robustly engage checkpoint mechanisms to halt DNA synthesis. As a result, WRN-degraded MSI-H cancer cells accumulate DNA damage across multiple replicative cycles and undergo successive rounds of increasingly aberrant mitoses, ultimately triggering cell death. Of potential therapeutic importance, we found no evidence of any generalized mechanism by which MSI-H cancers could adapt to near-complete loss of WRN. However, under conditions of partial WRN degradation, addition of low-dose ATR inhibitor significantly increased their combined efficacy to levels approaching full inactivation of WRN. Overall, our results provide the first comprehensive view of molecular events linking upstream inhibition of WRN to subsequent cell death and suggest that dual targeting of WRN and ATR might be a useful strategy for treating MSI-H cancers.
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