Butyrate acts through HDAC inhibition to enhance aryl hydrocarbon receptor activation by gut microbiota-derived ligands

芳香烃受体 染色质免疫沉淀 生物 丁酸盐 芳香烃受体核转运体 乙酰化 组蛋白脱乙酰基酶 细胞生物学 组蛋白脱乙酰酶抑制剂 组蛋白 生物化学 转录因子 发起人 基因表达 基因 发酵
作者
Morgane Modoux,Nathalie Rolhion,Jérémie H. Lefèvre,Cyriane Oeuvray,Petr Nádvorník,Peter Illéš,Patrick Emond,Yann Parc,Sridhar Mani,Zdeněk Dvořák,Harry Sokol
出处
期刊:Gut microbes [Landes Bioscience]
卷期号:14 (1) 被引量:61
标识
DOI:10.1080/19490976.2022.2105637
摘要

Aryl hydrocarbon receptor (AhR) is a critical player in the crosstalk between the gut microbiota and its host. However, factors regulating AhR within the gut, which is a complex metabolomic environment, are poorly understood. This study investigates the effect of a combination of metabolites on the activation mechanism of AhR. AhR activity was evaluated using both a luciferase reporter system and mRNA levels of AhR target genes on human cell lines and human colonic explants. AhR activation was studied by radioligand-binding assay, nuclear translocation of AhR by immuofluorescence and protein co-immunoprecipitation of AhR with ARNT. Indirect activation of AhR was evaluated using several tests and inhibitors. The promoter of the target gene CYP1A1 was studied both by chromatin immunoprecipitation and by using an histone deacetylase HDAC inhibitor (iHDAC). Short-chain fatty acids, and butyrate in particular, enhance AhR activity mediated by endogenous tryptophan metabolites without binding to the receptor. This effect was confirmed in human intestinal explants and did not rely on activation of receptors targeted by SCFAs, inhibition of AhR degradation or clearance of its ligands. Butyrate acted directly on AhR target gene promoter to reshape chromatin through iHDAC activity. Our findings revealed that butyrate is not an AhR ligand but acts as iHDAC leading to an increase recruitment of AhR to the target gene promoter in the presence of tryptophan-derived AhR agonists. These data contribute to a novel understanding of the complex regulation of AhR activation by gut microbiota-derived metabolites.
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