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首页> 外文期刊>Mutation research-Fundamental and Molecular Mechanisms of Mutagenesis >Nrf2 facilitates repair of radiation induced DNA damage through homologous recombination repair pathway in a ROS independent manner in cancer cells
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Nrf2 facilitates repair of radiation induced DNA damage through homologous recombination repair pathway in a ROS independent manner in cancer cells

机译:Nrf2通过同源重组修复途径以ROS独立方式促进癌细胞中辐射诱导的DNA损伤的修复

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Nrf2 is a redox sensitive transcription factor that is involved in the co-ordinated transcription of genes involved in redox homeostasis. But the role of Nrf2 in DNA repair is not investigated in detail. We have employed A549 and MCF7 cells to study the role of Nrf2 on DNA repair by inhibiting Nrf2 using all-trans retinoic acid (ATRA) or by knock down approach prior to radiation exposure (4Gy). DNA damage and repair analysis was studied by 7H2AX foci formation and comet assay. Results suggested that the inhibition of Nrf2 in A549 or MCF7 cells led to significant slowdown in DNA repair as compared to respective radiation controls. The persistence of residual DNA damage even in the presence of free radical scavenger N-acetyl cysteine, suggested that the influence of Nrf2 on DNA repair was not linked to its antioxidant functions. Further, its influence on non-homologous end joining repair pathway was studied by inhibiting both Nrf2 and DNA-PK together. This led to synergistic reduction of survival fraction, indicating that Nrf2 may not be influencing the NHEJ pathway. To investigate the role of homologous recombination repair (HR) pathway, RAD51 foci formation was monitored. There was a significant reduction in the foci formation in cells treated with ATRA or shRNA against Nrf2 as compared to their respective radiation controls. Further, Nrf2 inhibition led to significant reduction in mRNA levels of RAD51. BLAST analysis was also performed on upstream regions of DNA repair genes to identify antioxidant response element and found that many repair genes that are involved in HR pathway may be regulated by Nrf2. Together, these results suggest the involvement of Nrf2 in DNA repair, a hitherto unknown function of Nrf2, putatively through its influence on HR pathway.
机译:Nrf2是一种氧化还原敏感的转录因子,参与与氧化还原稳态有关的基因的协调转录。但是尚未详细研究Nrf2在DNA修复中的作用。我们已经使用A549和MCF7细胞来研究Nrf2在DNA修复中的作用,方法是使用全反式视黄酸(ATRA)抑制Nrf2或通过辐射照射(4Gy)之前的抑制方法。通过7H2AX焦点形成和彗星分析研究了DNA损伤和修复分析。结果表明,与相应的辐射对照相比,对A549或MCF7细胞中Nrf2的抑制导致DNA修复的显着减慢。即使在存在自由基清除剂N-乙酰半胱氨酸的情况下,残留的DNA损伤的持久性也表明Nrf2对DNA修复的影响与其抗氧化功能无关。此外,通过同时抑制Nrf2和DNA-PK来研究其对非同源末端连接修复途径的影响。这导致存活分数的协同降低,表明Nrf2可能不影响NHEJ途径。为了调查同源重组修复(HR)途径的作用,监测了RAD51灶的形成。与它们各自的辐射对照相比,在针对Nrf2的ATRA或shRNA处理的细胞中,灶的形成显着减少。此外,Nrf2抑制导致RAD51的mRNA水平显着降低。还对DNA修复基因的上游区域进行了BLAST分析,以鉴定抗氧化反应元件,发现HR通路中涉及的许多修复基因可能受Nrf2调控。总之,这些结果表明Nrf2参与了DNA修复,这是Nrf2迄今未知的功能,可能是通过其对HR途径的影响来实现的。

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