Epigenetic Memory Group, MRC Laboratory of Medical Sciences, Imperial College London Hammersmith Hospital Campus, Du Cane Road, London, W12 OHS, UK.
Whole Animal Physiology and Imaging, MRC Laboratory of Medical Sciences, Imperial College London, Hammersmith Hospital Campus, Du Cane Road, London, W12 0HS, UK.
Commun Biol. 2024 Apr 10;7(1):442. doi: 10.1038/s42003-024-06089-6.
Aryl hydrocarbon receptor (AHR) signalling integrates biological processes that sense and respond to environmental, dietary, and metabolic challenges to ensure tissue homeostasis. AHR is a transcription factor that is inactive in the cytosol but upon encounter with ligand translocates to the nucleus and drives the expression of AHR targets, including genes of the cytochrome P4501 family of enzymes such as Cyp1a1. To dynamically visualise AHR activity in vivo, we generated reporter mice in which firefly luciferase (Fluc) was non-disruptively targeted into the endogenous Cyp1a1 locus. Exposure of these animals to FICZ, 3-MC or to dietary I3C induced strong bioluminescence signal and Cyp1a1 expression in many organs including liver, lung and intestine. Longitudinal studies revealed that AHR activity was surprisingly long-lived in the lung, with sustained Cyp1a1 expression evident in discrete populations of cells including columnar epithelia around bronchioles. Our data link diet to lung physiology and also reveal the power of bespoke Cyp1a1-Fluc reporters to longitudinally monitor AHR activity in vivo.
芳烃受体 (AHR) 信号转导整合了感知和应对环境、饮食和代谢挑战的生物学过程,以确保组织内环境稳定。AHR 是一种转录因子,在细胞质中处于非活性状态,但遇到配体后会转移到细胞核内,并驱动 AHR 靶基因的表达,包括细胞色素 P4501 家族的酶基因,如 Cyp1a1。为了在体内动态可视化 AHR 活性,我们构建了将萤火虫荧光素酶 (Fluc) 非破坏性靶向到内源性 Cyp1a1 基因座的报告小鼠。这些动物暴露于 FICZ、3-MC 或饮食中的 I3C 会在许多器官(包括肝脏、肺和肠道)中诱导强烈的生物发光信号和 Cyp1a1 表达。纵向研究表明,AHR 活性在肺部的寿命非常长,在包括细支气管周围柱状上皮在内的离散细胞群体中都有持续的 Cyp1a1 表达。我们的数据将饮食与肺部生理学联系起来,还揭示了定制的 Cyp1a1-Fluc 报告基因在体内长期监测 AHR 活性的强大功能。