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Dietary and environmental factors have opposite AhR-dependent effects on

机译:饮食和环境因素对抗依赖性影响

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摘要

Genetic, dietary, and environmental factors concurrently shape the aging process. The aryl hydrocarbon receptor (AhR) was discovered as a dioxin-binding transcription factor involved in the metabolism of different environmental toxicants in vertebrates. Since then, the variety of pathophysiological processes regulated by the AhR has grown, ranging from immune response, metabolic pathways, and aging. Many modulators of AhR activity may impact on aging and age-associated pathologies, but, whether their effects are AhR-dependent has never been explored. Here, using Caenorhabditis elegans, as an elective model organism for aging studies, we show for the first time that lack of CeAHR-1 can have opposite effects on health and lifespan in a context-dependent manner. Using known mammalian AhR modulators we found that, ahr-1 protects against environmental insults (benzo(a)pyrene and UVB light) and identified a new role for AhR-bacterial diet interaction in animal lifespan, stress resistance, and age-associated pathologies. We narrowed down the dietary factor to a bacterially extruded metabolite likely involved in tryptophan metabolism. This is the first study clearly establishing C. elegans as a good model organism to investigate evolutionarily conserved functions of AhR-modulators and -regulated processes, indicating it can be exploited to contribute to the discovery of novel information about AhR in mammals.
机译:遗传,膳食和环境因素同时塑造老化过程。将芳基烃受体(AHR)被发现为脊椎动物中不同环境毒物代谢的二恶英结合转录因子。从那时起,由AHR调节的各种病理生理方法已经生长,从免疫应答,代谢途径和老化等等。 AHR活性的许多调节剂可能会影响老化和年龄相关的病理学,但是,它们是否依赖于依赖于AHR依赖性。在这里,使用Caenorhabditis elegans作为老化研究的选修模型生物体,我们首次展示了CeAhr-1的第一次可以对健康和寿命的效果相反。使用已知的哺乳动物AHR调节剂,我们发现,AHR-1保护环境损伤(苯并(A)芘和UVB光),并确定了AHR-细菌饮食在动物寿命,胁迫性和年龄相关病症中的α-细菌饮食相互作用的新作用。我们将膳食因子缩小到可能参与色氨酸代谢的细菌挤出的代谢物。这是第一项研究清楚地建立了C.埃塞乐杆菌作为一种良好的模型生物,以调查AHR调制器和-Regulation的过程的进化守恒功能,表明它可以被利用,为在哺乳动物中发现关于AHR的新颖信息。

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