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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Punctum on two different transcription factors regulated by PGC-1α: Nuclear factor erythroid-derived 2-like 2 and nuclear respiratory factor 2
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Punctum on two different transcription factors regulated by PGC-1α: Nuclear factor erythroid-derived 2-like 2 and nuclear respiratory factor 2

机译:绒毛对PGC-1α调控的两种不同转录因子的影响:核因子类红血球来源的2-like 2和核呼吸因子2

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摘要

Background The transcription factor nuclear factor-erythroid-derived 2-like 2 (official symbol: NFE2L2, alias: Nrf2) is a master regulator of antioxidant defense system, which makes it an attractive target for manipulations that aim to increase cellular resistance to oxidative stress. Nuclear respiratory factor 2 or GA binding protein transcription factor alpha (official symbol: GABPA, alias: NRF2) functions as a transcription factor that activates the expression of some key metabolic genes regulating cellular growth and nuclear genes required for mitochondrial respiration as well as mitochondrial DNA transcription and replication. Scope of review Despite the evident structural and functional differences, confusion has occurred in bibliographic databases due to the shared symbol NRF2 for these transcription factors. Such confusion has worsened after the discovery that the transcriptional co-activator peroxisome proliferator activated receptor gamma co-activator 1 alpha (PGC-1α) could control the signaling pathway of both NFE2L2 and GABPA through distinct molecular mechanisms. This review will summarize the implications of NFE2L2 and GABPA in various human patho-physiological conditions and how PGC-1α can regulate their different signaling axis. Major conclusions This review underlines the overlapping functions between PGC-1α, NFE2L2 and GABPA, which alteration could induce the development of human pathological states. General significance The comprehension of molecular mechanisms that modulate the intersection between these proteins will be important to identify new signaling axis involved in lifespan extension as well as novel targets for therapeutic interventions.
机译:背景转录因子核因子-类胡萝卜素衍生的2类2(正式符号:NFE2L2,别名:Nrf2)是抗氧化剂防御系统的主要调节剂,这使其成为旨在提高细胞对氧化应激抵抗力的操纵的有吸引力的靶标。 。核呼吸因子2或GA结合蛋白转录因子α(官方符号:GABPA,别名:NRF2)起着转录因子的作用,可激活一些关键的代谢基因的表达,从而调节细胞生长和线粒体呼吸以及线粒体DNA所需的核基因转录和复制。审查范围尽管存在明显的结构和功能差异,但由于这些转录因子的共享符号NRF2,在书目数据库中仍存在混淆。在发现转录共激活因子过氧化物酶体增殖物激活的受体γ共激活因子1α(PGC-1α)可以通过不同的分子机制控制NFE2L2和GABPA的信号传导途径后,这种混乱更加恶化了。这篇综述将总结NFE2L2和GABPA在各种人类病理生理状况中的意义,以及PGC-1α如何调节其不同的信号轴。主要结论这篇综述强调了PGC-1α,NFE2L2和GABPA之间的重叠功能,这种改变可能导致人类病理状态的发展。一般意义理解调节这些蛋白质之间相交的分子机制,对于鉴定参与寿命延长的新信号转导轴以及治疗性干预的新靶标至关重要。

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