Köhle Christoph, Bock Karl Walter
Department of Toxicology, Institute of Pharmacology and Toxicology, University of Tübingen, Germany.
Biochem Pharmacol. 2006 Sep 28;72(7):795-805. doi: 10.1016/j.bcp.2006.04.017. Epub 2006 Apr 29.
The Ah receptor (AhR) is a ligand-activated transcription factor and member of the bHLH/PAS (basic helix-loop-helix/Per-Arnt-Sim) family of chemosensors and developmental regulators. It represents a multifunctional molecular switch involved in regulation of endo- and xenobiotic metabolism, in vascular development and in dioxin-mediated toxicities. Recently, the oxidative stress-protecting Nrf2 has been shown to be a downstream target of the AhR [Miao W, Hu L, Scrivens PJ, Batist G. Transcriptional regulation of NF-E2 p45-regulated factor (NRF2) expression by the aryl hydrocarbon receptor-xenobiotic response element signaling pathway. J Biol Chem 2005;280:20340-8]. This finding offers the possibility that distinct but partially overlapping AhR and Nrf2 gene batteries of Phase II xenobiotic-metabolizing enzymes can be synergistically activated by a number of phytochemicals, acting as selective or mixed activators of target genes. In addition, it is conceivable that AhR-mediated oxidative/electrophile stress may be attenuated by coupled Nrf2 activation. The commentary discusses potentials and limitations of (i) selective Nrf2 and of (ii) synergistic AhR plus Nrf2 activation by phytochemicals in efforts towards chemoprevention of cancer and degenerative diseases, and describes clinical trials providing the expectation that chemopreventive measures may favorably modulate unavoidable endo- and exogenous toxin exposures in high risk populations.
芳烃受体(AhR)是一种配体激活的转录因子,属于化学感受器和发育调节因子的bHLH/PAS(碱性螺旋-环-螺旋/Per-Arnt-Sim)家族成员。它是一个多功能分子开关,参与内源性和外源性物质代谢的调节、血管发育以及二噁英介导的毒性作用。最近,已证明具有氧化应激保护作用的Nrf2是AhR的下游靶点[苗W,胡L,斯克里文斯PJ,巴蒂斯特G。芳烃受体-外源性物质反应元件信号通路对NF-E2 p45调节因子(NRF2)表达的转录调控。《生物化学杂志》2005年;280:20340 - 8]。这一发现提示,一些植物化学物质作为靶基因的选择性或混合激活剂,有可能协同激活Ⅱ相外源性物质代谢酶中不同但部分重叠的AhR和Nrf2基因库。此外,可以想象,通过耦合Nrf2激活,AhR介导的氧化/亲电应激可能会减弱。本评论讨论了(i)选择性Nrf2以及(ii)植物化学物质协同激活AhR加Nrf2在癌症和退行性疾病化学预防中的潜力和局限性,并描述了临床试验,这些试验表明化学预防措施有望对高危人群中不可避免的内源性和外源性毒素暴露产生有利调节作用。