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Human Leukemic Cells performing Oxidative Phosphorylation (OXPHOS) Generate an Antioxidant Response Independently of Reactive Oxygen species (ROS) Production

机译:执行氧化磷酸化(OXPHOS)的人类白血病细胞产生抗氧化反应而与活性氧(ROS)产生无关

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摘要

Tumor cell metabolism is altered during leukemogenesis. Cells performing oxidative phosphorylation (OXPHOS) generate reactive oxygen species (ROS) through mitochondrial activity. To limit the deleterious effects of excess ROS, certain gene promoters contain antioxidant response elements (ARE), e.g. the genes NQO-1 and HO-1. ROS induces conformational changes in KEAP1 and releases NRF2, which activates AREs. We show in vitro and in vivo that OXPHOS induces, both in primary leukemic cells and cell lines, de novo expression of NQO-1 and HO-1 and also the MAPK ERK5 and decreases KEAP1 mRNA. ERK5 activates the transcription factor MEF2, which binds to the promoter of the miR-23a–27a–24-2 cluster. Newly generated miR-23a destabilizes KEAP1 mRNA by binding to its 3′UTR. Lower KEAP1 levels increase the basal expression of the NRF2-dependent genes NQO-1 and HO-1. Hence, leukemic cells performing OXPHOS, independently of de novo ROS production, generate an antioxidant response to protect themselves from ROS.
机译:在白血病发生过程中,肿瘤细胞的代谢发生改变。进行氧化磷酸化(OXPHOS)的细胞通过线粒体活性产生活性氧(ROS)。为了限制过量ROS的有害作用,某些基因启动子包含抗氧化剂反应元件(ARE),例如基因NQO-1和HO-1。 ROS诱导KEAP1发生构象变化并释放NRF2,从而激活ARE。我们在体外和体内显示,OXPHOS可以在原代白血病细胞和细胞系中诱导从头表达NQO-1和HO-1以及MAPK ERK5并降低KEAP1 mRNA。 ERK5激活转录因子MEF2,该因子与miR-23a–27a–24-2簇的启动子结合。新产生的miR-23a通过与其3'UTR结合而使KEAP1 mRNA不稳定。较低的KEAP1水平会增加NRF2依赖性基因NQO-1和HO-1的基础表达。因此,独立于从头产生ROS的,执行OXPHOS的白血病细胞会产生抗氧化剂,以保护自己免受ROS的侵害。

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