Department of Pharmacology and Toxicology, College of Pharmacy, The University of Arizona, Tucson, AZ 85721, USA.
Nat Prod Rep. 2020 Jun 1;37(6):797-826. doi: 10.1039/c9np00061e. Epub 2020 May 13.
Covering: up to 2020The transcription factor NRF2 is one of the body's major defense mechanisms, driving transcription of >300 antioxidant response element (ARE)-regulated genes that are involved in many critical cellular processes including redox regulation, proteostasis, xenobiotic detoxification, and primary metabolism. The transcription factor NRF2 and natural products have an intimately entwined history, as the discovery of NRF2 and much of its rich biology were revealed using natural products both intentionally and unintentionally. In addition, in the last decade a more sinister aspect of NRF2 biology has been revealed. NRF2 is normally present at very low cellular levels and only activated when needed, however, it has been recently revealed that chronic, high levels of NRF2 can lead to diseases such as diabetes and cancer, and may play a role in other diseases. Again, this "dark side" of NRF2 was revealed and studied largely using a natural product, the quassinoid, brusatol. In the present review, we provide an overview of NRF2 structure and function to orient the general reader, we will discuss the history of NRF2 and NRF2-activating compounds and the biology these have revealed, and we will delve into the dark side of NRF2 and contemporary issues related to the dark side biology and the role of natural products in dissecting this biology.
截至 2020 年
转录因子 NRF2 是人体主要防御机制之一,它驱动超过 300 个抗氧化反应元件 (ARE) 调控基因的转录,这些基因参与许多关键的细胞过程,包括氧化还原调节、蛋白质稳态、外来物解毒和初级代谢。转录因子 NRF2 和天然产物有着密切的联系,因为 NRF2 的发现及其丰富的生物学特性的大部分都是使用天然产物有意或无意地揭示的。此外,在过去的十年中,NRF2 生物学的一个更为险恶的方面已经被揭示出来。NRF2 通常在细胞中的含量非常低,只有在需要时才会被激活,然而,最近的研究表明,慢性、高水平的 NRF2 可能导致糖尿病和癌症等疾病,并且可能在其他疾病中发挥作用。同样,NRF2 的这种“阴暗面”主要是使用一种天然产物——布立司他醇(brusatol)来揭示和研究的。在本综述中,我们提供了 NRF2 的结构和功能概述,以使一般读者了解,我们将讨论 NRF2 和 NRF2 激活化合物的历史以及它们所揭示的生物学,我们将深入探讨 NRF2 的阴暗面以及与阴暗面生物学相关的当代问题,以及天然产物在剖析这种生物学中的作用。