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首页> 外文期刊>Oncogene >The Forkhead Box M1 protein regulates BRIP1 expression and DNA damage repair in epirubicin treatment
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The Forkhead Box M1 protein regulates BRIP1 expression and DNA damage repair in epirubicin treatment

机译:Forkhead盒M1蛋白调节Epirubicin治疗中的Brip1表达和DNA损伤修复

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摘要

FOXM1 is implicated in genotoxic drug resistance but its role and mechanism of action remain unclear. Here, we establish that 纬H2AX foci, indicative of DNA double-strand breaks (DSBs), accumulate in a time-dependent manner in the drug-sensitive MCF-7 cells but not in the resistant counterparts in response to epirubicin. We find that FOXM1 expression is associated with epirubicin sensitivity and DSB repair. Ectopic expression of FOXM1 can increase cell viability and abrogate DSBs sustained by MCF-7 cells following epirubicin, owing to an enhancement in repair efficiency. Conversely, alkaline comet and 纬H2AX foci formation assays show that Foxm1-null cells are hypersensitive to DNA damage, epirubicin and 纬-irradiation. Furthermore, we find that FOXM1 is required for DNA repair by homologous recombination (HR) but not non-homologous end joining (NHEJ), using HeLa cell lines harbouring an integrated direct repeat green fluorescent protein reporter for DSB repair. We also identify BRIP1 as a direct transcription target of FOXM1 by promoter analysis and chromatin-immunoprecipitation assay. In agreement, depletion of FOXM1 expression by small interfering RNA downregulates BRIP1 expression at the protein and mRNA levels in MCF-7 and the epirubicin-resistant MCF-7 Epi~(R) cells. Remarkably, the requirement for FOXM1 for DSB repair can be circumvented by reintroduction of BRIP1, suggesting that BRIP1 is an important target of FOXM1 in DSB repair. Indeed, like FOXM1, BRIP1 is needed for HR. These data suggest that FOXM1 regulates BRIP1 expression to modulate epirubicin-induced DNA damage repair and drug resistance.
机译:Foxm1涉及基因毒性耐药性,但其作用和作用机制仍然不清楚。这里,我们建立了DNA双链断裂(DSB)的纬H2ax焦点,以时间依赖性的方式在药物敏感的MCF-7细胞中积累,但不响应于同性全酶的抗性对应物。我们发现FoxM1表达与Epirubicin敏感性和DSB修复有关。由于修复效率的增强,FoxM1的异位表达可以增加由Epirubicin的MCF-7细胞维持的细胞活力和废除DSB。相反,碱性彗星和纬H2AX焦胶形成测定结果表明,Foxm1-null细胞对DNA损伤,同性素和α-rotiation的过敏。此外,我们发现Foxm1是通过同源重组(HR)的DNA修复所必需的,但不是非同源的终端连接(NHEJ),使用Hela细胞系含有用于DSB修复的综合直接重复绿色荧光蛋白报告机。我们还通过启动子分析和染色质 - 免疫沉淀测定识别Brip1作为FoxM1的直接转录靶标。在一致中,小干扰RNA的FoxM1表达的耗竭在MCF-7和Epirubicin抗性MCF-7 Epi〜(R)细胞中,小干扰RNA在蛋白质和mRNA水平处下调Brip1表达。值得注意的是,可以通过重新引入Brip1来规避对DSB修复的FoxM1的要求,表明Brip1是DSB修复中Foxm1的重要目标。实际上,就像Foxm1一样,人力资源需要Brip1。这些数据表明FOXM1调节Brip1表达以调节所述Epirubicin诱导的DNA损伤修复和耐药性。

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