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Emerging functional cross-talk between the Keap1-Nrf2 system and mitochondria

机译:Keap1-Nrf2系统与线粒体之间的新兴功能性串扰

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摘要

Nuclear factor erythroid-derived 2-related factor 2 (Nrf2) was originally identified as a positive regulator of drug detoxifying enzyme gene expression during exposure to environmental electrophiles. Currently, Nrf2 is known to regulate the expression of hundreds of cytoprotective genes to counteract endogenously or exogenously generated oxidative stress. Furthermore, when activated in human tumors by somatic mutations, Nrf2 confers growth advantages and chemoresistance by regulating genes involved in various processes such as the pentose phosphate pathway and nucleotide synthesis in addition to antioxidant proteins. Interestingly, increasing evidence shows that Nrf2 is associated with mitochondrial biogenesis during environmental stresses in certain tissues such as the heart. Furthermore, SKN-1, a functional homolog of Nrf2 in C. elegans, is activated by mitochondrial reactive oxygen species and extends life span by promoting mitochondrial homeostasis (i.e., mitohormesis). Similarly, Nrf2 activation was recently observed in the heart of surfeit locus protein 1 (Surf1) -/- mice in which cellular respiration was decreased due to cytochrome c oxidase defects. In this review, we critically examine the relationship between Nrf2 and mitochondria and argue that the Nrf2 stress pathway intimately communicates with mitochondria to maintain cellular homeostasis during oxidative stress.
机译:核因子类胡萝卜素衍生的2相关因子2(Nrf2)最初被确定为暴露于环境亲电试剂期间药物解毒酶基因表达的正向调节剂。目前,已知Nrf2调节数百种细胞保护性基因的表达以抵消内源性或外源性产生的氧化应激。此外,当Nrf2在人体肿瘤中通过体细胞突变激活时,Nrf2可以通过调节参与除抗氧化蛋白之外的各种过程(例如戊糖磷酸途径和核苷酸合成)的基因来赋予生长优势和化学抗性。有趣的是,越来越多的证据表明,Nrf2与某些组织(例如心脏)在环境压力期间与线粒体生物发生有关。此外,线虫中Nrf2的功能同源物SKN-1被线粒体活性氧激活,并通过促进线粒体稳态(即线粒体增加)来延长寿命。同样,最近在过量基因蛋白1(Surf1)-/-小鼠的心脏中观察到Nrf2激活,其中由于细胞色素c氧化酶缺陷,细胞的呼吸作用降低。在这篇综述中,我们批判性地研究了Nrf2与线粒体之间的关系,并认为Nrf2应激途径与线粒体密切联系,以在氧化应激期间维持细胞稳态。

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