Hammad Mira, Raftari Mohammad, Cesário Rute, Salma Rima, Godoy Paulo, Emami S Noushin, Haghdoost Siamak
University of Caen Normandy, UMR6252 CIMAP/ARIA, GANIL, 14000 Caen, France.
Department of Molecular Biosciences, The Wenner-Gren Institute, Stockholm University, 10691 Stockholm, Sweden.
Antioxidants (Basel). 2023 Jun 30;12(7):1371. doi: 10.3390/antiox12071371.
The coordinating role of nuclear factor erythroid-2-related factor 2 (Nrf2) in cellular function is undeniable. Evidence indicates that this transcription factor exerts massive regulatory functions in multiple signaling pathways concerning redox homeostasis and xenobiotics, macromolecules, and iron metabolism. Being the master regulator of antioxidant system, Nrf2 controls cellular fate, influencing cell proliferation, differentiation, apoptosis, resistance to therapy, and senescence processes, as well as infection disease success. Because Nrf2 is the key coordinator of cell defence mechanisms, dysregulation of its signaling has been associated with carcinogenic phenomena and infectious and age-related diseases. Deregulation of this cytoprotective system may also interfere with immune response. Oxidative burst, one of the main microbicidal mechanisms, could be impaired during the initial phagocytosis of pathogens, which could lead to the successful establishment of infection and promote susceptibility to infectious diseases. There is still a knowledge gap to fill regarding the molecular mechanisms by which Nrf2 orchestrates such complex networks involving multiple pathways. This review describes the role of Nrf2 in non-pathogenic and pathogenic cells.
核因子红细胞2相关因子2(Nrf2)在细胞功能中的协调作用不可否认。有证据表明,这种转录因子在涉及氧化还原稳态、外源性物质、大分子和铁代谢的多种信号通路中发挥着大量调节功能。作为抗氧化系统的主要调节因子,Nrf2控制细胞命运,影响细胞增殖、分化、凋亡、对治疗的抗性以及衰老过程,以及感染性疾病的发生。由于Nrf2是细胞防御机制的关键协调者,其信号失调与致癌现象、感染性疾病和年龄相关疾病有关。这种细胞保护系统的失调也可能干扰免疫反应。氧化爆发是主要的杀菌机制之一,在病原体的初始吞噬过程中可能受损,这可能导致感染的成功建立并增加对传染病的易感性。关于Nrf2如何协调涉及多种途径的如此复杂网络的分子机制,仍有知识空白需要填补。本综述描述了Nrf2在非致病细胞和致病细胞中的作用。