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LSD1 mediated changes in the local redox environment during the DNA damage response

机译:LSD1在DNA损伤反应期间介导的局部氧化还原环境变化

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摘要

The redox state of the cell can be affected by many cellular conditions. In this study we show that detectable reactive oxygen species (ROS) are also generated in response to DNA damage by the chromatin remodeling factor and monoamine oxidase LSD1/KDM1A. This raised the possibility that the localized generation of hydrogen peroxide produced by LSD1 may affect the function of proximally located DNA repair proteins. The two major pathways for repair of DNA double-strand breaks (DSBs) are homologous recombination (HR) and non-homologous end joining (NHEJ). Cells were exposed to low levels of ectopic H2O2, DNA breaks generated by laser light, and recruitment kinetics of NHEJ protein Ku80 to DNA damage sites determined. Ku80 recruitment to damage sites was significantly decreased in cells pretreated with H2O2 while HR end binding protein Nbs1 was increased. This suggests that the DNA repair pathway choice has the potential to be modulated by the local redox state. This has implications for chemotherapeutic approaches involving generating DNA damage to target actively dividing cancer cells, which may be more or less effective dependent on the redox state of the targeted cells and the predominant repair pathway required to repair the type of DNA damage generated.
机译:细胞的氧化还原状态可能受许多细胞条件的影响。在这项研究中,我们表明,染色质重塑因子和单胺氧化酶LSD1 / KDM1A对DNA损伤也产生了可检测到的活性氧(ROS)。这增加了由LSD1产生的过氧化氢的局部生成可能会影响位于近端的DNA修复蛋白的功能的可能性。修复DNA双链断裂(DSB)的两个主要途径是同源重组(HR)和非同源末端连接(NHEJ)。细胞暴露于低水平的异位H2O2,激光产生的DNA断裂以及确定NHEJ蛋白Ku80向DNA损伤位点的募集动力学。在用H2O2预处理的细胞中,Ku80募集到损伤部位明显减少,而HR末端结合蛋白Nbs1增加。这表明DNA修复途径的选择有可能被局部氧化还原状态所调节。这对涉及产生针对靶活性分裂的癌细胞的DNA损伤的化学治疗方法有影响,其可能或多或少地取决于靶细胞的氧化还原状态和修复所产生的DNA损伤类型所需的主要修复途径。

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