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芳香烃受体、表观遗传学与衰老过程。

The Aryl Hydrocarbon Receptor, Epigenetics and the Aging Process.

机构信息

Sara Abudahab, Smith Building, 410 North 12th Street, Medical College of Virginia Campus, Virginia Commonwealth University, Richmond, VA 23298-0533, USA. Email:

出版信息

J Nutr Health Aging. 2023;27(4):291-300. doi: 10.1007/s12603-023-1908-1.

Abstract

The aryl hydrocarbon receptor (AhR) is a ligand-dependent transcription factor, classically associated with the regulation of xenobiotic metabolism in response to environmental toxins. In recent years, transgenic rodent models have implicated AhR in aging and longevity. Moreover, several AhR ligands, such as resveratrol and quercetin, are compounds proven to extend the lifespan of model organisms. In this paper, we first review AhR biology with a focus on aging and highlight several AhR ligands with potential anti-aging properties. We outline how AhR-driven expression of xenobiotic metabolism genes into old age may be a key mechanism through which moderate induction of AhR elicits positive benefits on longevity and healthspan. Furthermore, via integration of publicly available datasets, we show that liver-specific AhR target genes are enriched among genes subject to epigenetic aging. Changes to epigenetic states can profoundly affect transcription factor binding and are a hallmark of the aging process. We suggest that the interplay between AhR and epigenetic aging should be the subject of future research and outline several key gaps in the current literature. Finally, we recommend that a broad range of non-toxic AhR ligands should be investigated for their potential to promote healthspan and longevity.

摘要

芳香烃受体 (AhR) 是一种配体依赖性转录因子,经典地与环境毒素诱导的外源物代谢调节有关。近年来,转基因啮齿动物模型表明 AhR 与衰老和长寿有关。此外,几种 AhR 配体,如白藜芦醇和槲皮素,是已被证明能延长模式生物寿命的化合物。在本文中,我们首先回顾了 AhR 生物学,重点关注衰老,并强调了几种具有潜在抗衰老特性的 AhR 配体。我们概述了 AhR 驱动的外源物代谢基因在老年时的表达如何可能是适度诱导 AhR 对长寿和健康寿命产生积极影响的关键机制。此外,通过整合公开可用的数据集,我们表明,肝特异性 AhR 靶基因在受表观遗传衰老影响的基因中富集。表观遗传状态的变化可以深刻影响转录因子结合,是衰老过程的一个标志。我们认为,AhR 和表观遗传衰老之间的相互作用应该是未来研究的主题,并概述了当前文献中的几个关键空白。最后,我们建议研究广泛的非毒性 AhR 配体,以探索它们促进健康寿命和长寿的潜力。

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