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Dianhydrogalactitol induces replication-dependent DNA damage in tumor cells preferentially resolved by homologous recombination

机译:二氢半乳糖醇在肿瘤细胞中诱导复制依赖性DNA损伤并优先通过同源重组解决

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摘要

1,2:5,6-Dianhydrogalactitol (DAG) is a bifunctional DNA-targeting agent causing N7-guanine alkylation and inter-strand DNA crosslinks currently in clinical trial for treatment of glioblastoma. While preclinical studies and clinical trials have demonstrated antitumor activity of DAG in a variety of malignancies, understanding the molecular mechanisms underlying DAG-induced cytotoxicity is essential for proper clinical qualification. Using non-small cell lung cancer (NSCLC) as a model system, we show that DAG-induced cytotoxicity materializes when cells enter S phase with unrepaired N7-guanine DNA crosslinks. In S phase, DAG-mediated DNA crosslink lesions translated into replication-dependent DNA double-strand breaks (DSBs) that subsequently triggered irreversible cell cycle arrest and loss of viability. DAG-treated NSCLC cells attempt to repair the DSBs by homologous recombination (HR) and inhibition of the HR repair pathway sensitized NSCLC cells to DAG-induced DNA damage. Accordingly, our work describes a molecular mechanism behind N7-guanine crosslink-induced cytotoxicity in cancer cells and provides a rationale for using DAG analogs to treat HR-deficient tumors.
机译:1,2:5,6-二氢半乳糖醇(DAG)是一种双功能DNA靶向剂,目前正在临床试验中,引起N 7 -鸟嘌呤烷基化和链间DNA交联。尽管临床前研究和临床试验已证明DAG在多种恶性肿瘤中具有抗肿瘤活性,但了解DAG诱导的细胞毒性的分子机制对于正确的临床鉴定至关重要。使用非小细胞肺癌(NSCLC)作为模型系统,我们表明当细胞进入具有未修复的N 7 -鸟嘌呤DNA交联的S期时,DAG诱导的细胞毒性得以实现。在S期,DAG介导的DNA交联损伤转化为复制依赖性DNA双链断裂(DSB),随后触发不可逆的细胞周期停滞并丧失活力。 DAG处理的NSCLC细胞试图通过同源重组(HR)和抑制HR修复途径使NSCLC细胞对DAG诱导的DNA损伤敏感来修复DSB。因此,我们的工作描述了N 7 -鸟嘌呤交联诱导的癌细胞毒性的分子机制,并为使用DAG类似物治疗HR缺乏型肿瘤提供了理论依据。

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