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Citations to this article

Microbiota-sensitive epigenetic signature predicts inflammation in Crohn’s disease
Daniel Kelly, … , Lee A. Denson, Theresa Alenghat
Daniel Kelly, … , Lee A. Denson, Theresa Alenghat
Published September 20, 2018
Citation Information: JCI Insight. 2018;3(18):e122104. https://doi.org/10.1172/jci.insight.122104.
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Research Article Gastroenterology Article has an altmetric score of 87

Microbiota-sensitive epigenetic signature predicts inflammation in Crohn’s disease

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Abstract

Altered response to the intestinal microbiota strongly associates with inflammatory bowel disease (IBD); however, how commensal microbial cues are integrated by the host during the pathogenesis of IBD is not understood. Epigenetics represents a potential mechanism that could enable intestinal microbes to modulate transcriptional output during the development of IBD. Here, we reveal a histone methylation signature of intestinal epithelial cells isolated from the terminal ilea of newly diagnosed pediatric IBD patients. Genes characterized by significant alterations in histone H3-lysine 4 trimethylation (H3K4me3) showed differential enrichment in pathways involving immunoregulation, cell survival and signaling, and metabolism. Interestingly, a large subset of these genes was epigenetically regulated by microbiota in mice and several microbiota-sensitive epigenetic targets demonstrated altered expression in IBD patients. Remarkably though, a substantial proportion of these genes exhibited H3K4me3 levels that correlated with the severity of intestinal inflammation in IBD, despite lacking significant differential expression. Collectively, these data uncover a previously unrecognized epigenetic profile of IBD that can be primed by commensal microbes and indicate sensitive targets in the epithelium that may underlie how microbiota predispose to subsequent intestinal inflammation and disease.

Authors

Daniel Kelly, Michael Kotliar, Vivienne Woo, Sajjeev Jagannathan, Jordan Whitt, Jessica Moncivaiz, Bruce J. Aronow, Marla C. Dubinsky, Jeffrey S. Hyams, James F. Markowitz, Robert N. Baldassano, Michael C. Stephens, Thomas D. Walters, Subra Kugathasan, Yael Haberman, Nambirajan Sundaram, Michael J. Rosen, Michael Helmrath, Rebekah Karns, Artem Barski, Lee A. Denson, Theresa Alenghat

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 Total
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Citations to this article (37)

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Gut Microbes 2025
Implications of gut microbiota-mediated epigenetic modifications in intestinal diseases
Zhang Q, Liu Y, Li Y, Bai G, Pang J, Wu M, Li J, Zhao X, Xia Y
Gut Microbes 2025
Distinct Retrotransposon Transcriptome in Pediatric Crohn’s Disease
Chen Q, McNinch C, May E, LaPoint P, Koroleva G, Sutton A, Prasad R, Jo D, O\u2019Laughlin B, Patel A, Levy S, Hourigan S
medRxiv 2025
Polyphenolic Compounds: Orchestrating Intestinal Microbiota Harmony during Aging
Pereira QC, Fortunato IM, Oliveira FD, Alvarez MC, dos Santos TW, Ribeiro ML
Nutrients 2024
Mitochondrial function and gastrointestinal diseases.
Haque PS, Kapur N, Barrett TA, Theiss AL
Nature reviews. Gastroenterology & hepatology 2024
The potential of short-chain fatty acid epigenetic regulation in chronic low-grade inflammation and obesity.
Kopczyńska J, Kowalczyk M
Frontiers in immunology 2024
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Sharma SA, Oladejo SO, Kuang Z
Cell chemical biology 2024
Pediatric Crohn's disease diagnosis aid via genomic analysis and machine learning
Zheng Z, Zhan S, Zhou Y, Huang G, Chen P, Li B
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Liang B, Wang Y, Xu J, Shao Y, Xing D
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C Fernández-Ponce, RN Quiroz, AD Perez, GA Martinez, AC Bonfanti, AA Hoyos, LG Escorcia, SH Agudelo, CO Sánchez, JV Camacho, LA Ibarra, JC Machado, AE Garavito, F García-Cózar, EN Quiroz
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