Translational Research Program, Fred Hutchinson Cancer Center, Seattle, Washington, USA.
Service of Endocrinology, Diabetology and Metabolism, Lausanne University Hospital, Lausanne, Switzerland.
Antioxid Redox Signal. 2023 Mar;38(7-9):684-708. doi: 10.1089/ars.2022.0200. Epub 2023 Feb 22.
The transcription factor NRF2 (NF-E2-related factor 2) plays an important role as a master regulator of the cellular defense system by activating transcriptional programs of NRF2 target genes encoding multiple enzymes related to cellular redox balance and xenobiotic detoxication. Comprehensive transcriptional analyses continue to reveal an ever-broadening range of NRF2 target genes, demonstrating the sophistication and diversification of NRF2 biological signatures beyond its canonical cytoprotective roles. Accumulating evidence indicates that NRF2 has a strong association with the regulation of cell fates by influencing key processes of cellular transitions in the three major phases of the life cycle of the cell (, cell birth, cell differentiation, and cell death). The molecular integration of NRF2 signaling into this regulatory program occurs through a wide range of NRF2 target genes encompassing canonical functions and those manipulating cell fate pathways. A singular focus on NRF2 signaling for dissecting its actions limits in-depth understanding of its intersection with the molecular machinery of cell fate determinations. Compensatory responses of downstream pathways governed by NRF2 executed by a variety of transcription factors and multifactorial signaling crosstalk require further exploration. Further investigations using optimized models and active engagement of overarching approaches to probe the interplay of widespread pathways are needed to study the properties and capabilities of NRF2 signaling as a part of a large network within the cell fate regulatory domain. 38, 684-708.
转录因子 NRF2(NF-E2 相关因子 2)作为细胞防御系统的主要调节因子,通过激活 NRF2 靶基因的转录程序,对与细胞氧化还原平衡和外来物解毒相关的多种酶进行编码,从而发挥重要作用。综合转录分析不断揭示 NRF2 靶基因的范围不断扩大,证明了 NRF2 生物学特征的复杂性和多样化,超出了其经典的细胞保护作用。越来越多的证据表明,NRF2 通过影响细胞周期三个主要阶段(细胞出生、细胞分化和细胞死亡)中细胞转化的关键过程,与细胞命运的调节密切相关。NRF2 信号分子通过广泛的 NRF2 靶基因整合到这个调控程序中,这些靶基因包括经典功能和操纵细胞命运途径的基因。单一地关注 NRF2 信号通路来剖析其作用,限制了对其与细胞命运决定的分子机制交叉点的深入理解。需要进一步探索由各种转录因子和多因素信号串扰执行的 NRF2 下游途径的代偿反应。需要使用优化的模型进行进一步研究,并积极采用全面的方法来探究广泛途径的相互作用,以研究 NRF2 信号作为细胞命运调控域内大网络一部分的特性和功能。