表观遗传学
DNA甲基化
平衡
微生物群
染色质
肠上皮
甲基化
细胞生物学
生物
肠道菌群
结肠炎
免疫学
基因
遗传学
基因表达
上皮
作者
Ihab Ansari,Günter Raddatz,Julian Gutekunst,Meshi Ridnik,Daphne Cohen,Monther Abu-Remaileh,Timur Tuganbaev,Hagit Shapiro,Eli Pikarsky,Eran Elinav,Frank Lyko,Yehudit Bergman
出处
期刊:Nature microbiology
日期:2020-02-03
卷期号:5 (4): 610-619
被引量:131
标识
DOI:10.1038/s41564-019-0659-3
摘要
Although much research has been done on the diversity of the gut microbiome, little is known about how it influences intestinal homeostasis under normal and pathogenic conditions. Epigenetic mechanisms have recently been suggested to operate at the interface between the microbiota and the intestinal epithelium. We performed whole-genome bisulfite sequencing on conventionally raised and germ-free mice, and discovered that exposure to commensal microbiota induced localized DNA methylation changes at regulatory elements, which are TET2/3-dependent. This culminated in the activation of a set of ‘early sentinel’ response genes to maintain intestinal homeostasis. Furthermore, we demonstrated that exposure to the microbiota in dextran sodium sulfate-induced acute inflammation results in profound DNA methylation and chromatin accessibility changes at regulatory elements, leading to alterations in gene expression programs enriched in colitis- and colon-cancer-associated functions. Finally, by employing genetic interventions, we show that microbiota-induced epigenetic programming is necessary for proper intestinal homeostasis in vivo. A comparison of DNA methylation patterns between conventionally raised and germ-free mice shows that the presence of a commensal microbiota induces methylation changes at regulatory elements in a subset of genes that are important for intestinal homeostasis.
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