The aryl hydrocarbon receptor system.

Robert Barouki, Martine Aggerbeck, Lawrence Aggerbeck, Xavier Coumoul
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引用次数: 112

Abstract

The aryl hydrocarbon receptor (AhR) recognizes a large number of xenobiotics, such as polyaromatic hydrocarbons (PAHs) and dioxins, and it activates several metabolic and detoxification pathways. Recent evidence suggests that this receptor also has important endogenous functions subsequent to activation by natural dietary compounds and/or endogenous metabolites. This receptor, thus, has physiological functions that extend beyond specific instances of detoxification. Understanding the roles played by this receptor might be enhanced by a systems biology approach. Indeed, the AhR "ligandome" is very complex and the different classes of ligands involved could induce widely diverse effects. The protein "interactome" of the AhR comprises several tens of proteins and it is altered by the binding of ligands to the receptor. Furthermore, large-scale studies have shown cell and tissue-specific patterns of regulated gene expression which may depend upon the type of ligand, although these aspects need further substantiation. Finally, the AhR biological effects are extensive and include detoxification, cellular proliferation and migration, immune regulation and neuronal effects. A holistic approach should provide a better understanding of the biology of this receptor in addition to providing new avenues for the identification of specific toxicity mechanisms.

芳烃受体体系。
芳烃受体(aryl hydrocarbon receptor, AhR)能识别大量的外源生物,如多芳烃(PAHs)和二恶英,并激活多种代谢和解毒途径。最近的证据表明,该受体在被天然膳食化合物和/或内源性代谢物激活后也具有重要的内源性功能。因此,这种受体具有超出解毒特定实例的生理功能。了解这种受体的作用可能会通过系统生物学的方法得到加强。事实上,AhR“配体”是非常复杂的,不同种类的配体可以引起广泛不同的作用。AhR的蛋白质“相互作用组”由几十种蛋白质组成,并通过配体与受体的结合而改变。此外,大规模的研究表明,细胞和组织特异性的调控基因表达模式可能取决于配体的类型,尽管这些方面需要进一步证实。最后,AhR的生物学效应是广泛的,包括解毒、细胞增殖和迁移、免疫调节和神经元效应。一个整体的方法应该提供一个更好的理解这种受体的生物学除了提供新的途径,以确定具体的毒性机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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