Jin Xuemei, Chen Long, Yang Yuelan, Tan Rongshao, Jiang Chunjie
Department of Clinical Nutrition, Guangzhou Institute of Disease-Oriented Nutritional Research, Guangzhou Red Cross Hospital of Jinan University, Guangzhou, China.
Department of Preventive Medicine, School of Medicine, Yanbian University, Yanji, China.
Antioxid Redox Signal. 2025 Jun;42(16-18):973-985. doi: 10.1089/ars.2024.0586. Epub 2024 Dec 24.
Under normal physiological conditions, Nrf2 undergoes ubiquitination and subsequent proteasome degradation to maintain its basal activity. Oxidative stress can trigger Nrf2 activation, prompting its translocation to the nucleus where it functions as a transcription factor, activating various antioxidant pathways, and conferring antioxidant properties. While extensive research has shown Nrf2's protective role in various diseases, emerging evidence suggests that Nrf2 activation can also produce harmful effects. This review examines the pathological contexts in which Nrf2 assumes different roles, emphasizing the mechanisms and conditions that result in adverse outcomes. Persistent Nrf2 activation may have deleterious consequences, necessitating further investigation into the specific conditions and mechanisms through which Nrf2 exerts its harmful effects. 42, 973-985.
在正常生理条件下,Nrf2会经历泛素化及随后的蛋白酶体降解,以维持其基础活性。氧化应激可触发Nrf2激活,促使其转位至细胞核,在细胞核中它作为转录因子发挥作用,激活各种抗氧化途径,并赋予抗氧化特性。虽然大量研究表明Nrf2在各种疾病中具有保护作用,但新出现的证据表明Nrf2激活也可能产生有害影响。本综述探讨了Nrf2发挥不同作用的病理背景,强调了导致不良后果的机制和条件。持续的Nrf2激活可能会产生有害后果,因此有必要进一步研究Nrf2发挥有害作用的具体条件和机制。42, 973 - 985。