抑制DNA合成是细胞抑制药物诱导哺乳动物细胞同源重组的有效机制

Catherine Arnaudeau , Erika Tenorio Miranda , Dag Jenssen , Thomas Helleday
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引用次数: 58

摘要

重组被认为是致癌发生中潜在的基因组不稳定性的过程。本报告探讨了细胞抑制药物诱导染色体内同源重组的潜力。为了解决这一问题,我们利用一种具有良好特征的哺乳动物细胞系的hprt基因作为一种独特的内源标记进行同源重组。在此背景下,研究了不同作用方式的常用细胞抑制剂,即双功能烷基化剂,DNA合成抑制剂,拓扑异构酶抑制剂和纺锤体毒素。除纺锤体毒外,所有药物均可诱导同源重组,且重组效力差异明显,这可能与它们的作用机制有关。双功能烷基化剂是效率最低的,而DNA合成抑制剂是最有效的同源重组诱导剂。这就提出了在癌症化疗中是否应该考虑这些后期药物的副作用的问题。
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Inhibition of DNA synthesis is a potent mechanism by which cytostatic drugs induce homologous recombination in mammalian cells

Recombination is a process thought to be underlying genomic instability involved in carcinogenesis. This report examines the potential of cytostatic drugs to induce intrachromosomal homologous recombination. In order to address this question, the hprt gene of a well-characterized mammalian cell line was employed as a unique endogenous marker for homologous recombination. Commonly used cytostatic drugs with different mode of action were investigated in this context, i.e. bifunctional alkylating agents, inhibitors of DNA synthesis, inhibitors of topoisomerases and a spindle poison. With the exception of the spindle poison, all these drugs were found to induce homologous recombination, with clear differences in their recombination potency, which could be related to their mechanism of action. Bifunctional alkylating agents were the least efficient, whereas inhibitors of DNA synthesis were found to be the most potent inducers of homologous recombination. This raises the question whether these later drugs should be considered for adverse effects in cancer chemotheraphy.

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