Department of Biomedical Genetics, University of Rochester Medical Center, Rochester, New York, USA.
Curr Opin Clin Nutr Metab Care. 2011 Jan;14(1):41-8. doi: 10.1097/MCO.0b013e32834136f2.
The vertebrate cap'n'collar family transcription factor Nrf2 and its invertebrate homologues SKN-1 (in worms) and CncC (in flies) function as master mediators of antioxidant and detoxification responses and regulators of the cellular redox state. Nrf2 controls gene expression programs that defend various tissues against diverse electrophilic stressors and oxidative insults, thus protecting the organism from disorders that are caused or exacerbated by such stresses. Moreover, studies on model organisms implicate the Nrf2 pathway in the prevention of aging-related diseases and suggest that SKN-1-regulated and CncC-regulated gene expression can promote longevity. These facets of Nrf2 signaling have been thoroughly reviewed. This article discusses another aspect of the Nrf2 pathway's function that has not yet received the same degree of attention, but emerges as a topic of increasing interest and potential clinical impact: its role in metabolic regulation and its interaction with central signaling systems that respond to nutritional inputs.
Recent evidence identifies Nrf2 signaling as a mediator of the salutary effects of caloric restriction. Nrf2 signaling also crosstalks with metabolic signaling systems such as the insulin/Akt pathway as well as with the metabolism of lipids. Moreover, Nrf2 has a protective role in models of diabetic nephropathy.
The emerging role of Nrf2 as an effector of metabolic and longevity signals offers new therapeutic perspectives. The potential impact of pharmacological manipulation of Nrf2 signaling as a strategy for the prevention and treatment of metabolic disease can be envisioned.
脊椎动物“帽子和领子”家族转录因子 Nrf2 及其无脊椎动物同源物 SKN-1(在蠕虫中)和 CncC(在果蝇中)作为抗氧化和解毒反应的主要介质以及细胞氧化还原状态的调节剂发挥作用。Nrf2 控制基因表达程序,这些程序保护各种组织免受各种亲电子应激源和氧化损伤的影响,从而使生物体免受这些应激引起或加剧的疾病的影响。此外,对模式生物的研究表明,Nrf2 途径参与了衰老相关疾病的预防,并表明 SKN-1 调节和 CncC 调节的基因表达可以促进长寿。这些方面的 Nrf2 信号已被彻底审查。本文讨论了 Nrf2 通路功能的另一个方面,该方面尚未受到同样程度的关注,但作为一个越来越受到关注和潜在临床影响的话题出现:它在代谢调节中的作用及其与响应营养输入的中央信号系统的相互作用。
最近的证据表明 Nrf2 信号是热量限制有益作用的介质。Nrf2 信号还与代谢信号系统(如胰岛素/Akt 途径)以及脂质代谢相互作用。此外,Nrf2 在糖尿病肾病模型中具有保护作用。
Nrf2 作为代谢和长寿信号的效应因子的新兴作用提供了新的治疗视角。可以设想通过药理学手段操纵 Nrf2 信号作为预防和治疗代谢疾病的策略的潜在影响。