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Transcriptional Regulation by Nrf2

机译:Nrf2的转录调控

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摘要

>Significance: Nuclear factor E2-related factor 2 (Nrf2) is a transcription factor that coordinates the basal and stress-inducible activation of a vast array of cytoprotective genes. Understanding the regulation of Nrf2 activity and downstream pathways has major implications for human health.>Recent Advances: Nrf2 regulates the transcription of components of the glutathione and thioredoxin antioxidant systems, as well as enzymes involved in phase I and phase II detoxification of exogenous and endogenous products, NADPH regeneration, and heme metabolism. It therefore represents a crucial regulator of the cellular defense mechanisms against xenobiotic and oxidative stress. In addition to antioxidant responses, Nrf2 is involved in other cellular processes, such as autophagy, intermediary metabolism, stem cell quiescence, and unfolded protein response. Given the wide range of processes that Nrf2 controls, its activity is tightly regulated at multiple levels. Here, we review the different modes of regulation of Nrf2 activity and the current knowledge of Nrf2-mediated transcriptional control.>Critical Issues: It is now clear that Nrf2 lies at the center of a complex regulatory network. A full comprehension of the Nrf2 program will require an integrated consideration of all the different factors determining Nrf2 activity.>Future Directions: Additional computational and experimental studies are needed to obtain a more dynamic global view of Nrf2-mediated gene regulation. In particular, studies comparing how the Nrf2-dependent network changes from a physiological to a pathological condition can provide insight into mechanisms of disease and instruct new treatment strategies.
机译:>意义:核因子E2相关因子2(Nrf2)是一种转录因子,可协调多种细胞保护性基因的基础激活和应激诱导激活。了解Nrf2活性和下游途径的调节对人类健康具有重要意义。>最新进展: Nrf2调节谷胱甘肽和硫氧还蛋白抗氧化系统的组分以及参与I期和Phase期的酶的转录II外源性和内源性产品的排毒,NADPH再生和血红素代谢。因此,它代表了针对异种和氧化应激的细胞防御机制的关键调节器。除抗氧化剂反应外,Nrf2还参与其他细胞过程,例如自噬,中间代谢,干细胞静止和未折叠的蛋白质反应。鉴于Nrf2所控制的过程范围很广,其活动在多个级别受到严格控制。在这里,我们回顾了Nrf2活性的不同调节模式以及Nrf2介导的转录控制的当前知识。>关键问题:现在很明显,Nrf2处于复杂调节网络的中心。全面理解Nrf2程序将需要综合考虑所有决定Nrf2活性的因素。>未来方向:需要更多的计算和实验研究来获得更动态的Nrf2介导基因的全局视图规。特别是,比较Nrf2依赖性网络如何从生理状态转变为病理状态的研究可以深入了解疾病的机制并指导新的治疗策略。

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