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miR147 promotes mucosal integrity and healing in intestinal inflammation
Agnieszka K. Czopik, Arash Dabiri, Chia-Hao Tung, Victoria Vaughn, Xiangsheng Huang, Jinlian Wang, Hui Li, Nicolas F. Moreno, Natalia V. Piwko, Katherine Figarella, Hongfang Liu, Zhongming Zhao, Xiaoyi Yuan, Holger K. Eltzschig
Agnieszka K. Czopik, Arash Dabiri, Chia-Hao Tung, Victoria Vaughn, Xiangsheng Huang, Jinlian Wang, Hui Li, Nicolas F. Moreno, Natalia V. Piwko, Katherine Figarella, Hongfang Liu, Zhongming Zhao, Xiaoyi Yuan, Holger K. Eltzschig
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Research Article Gastroenterology Inflammation

miR147 promotes mucosal integrity and healing in intestinal inflammation

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Abstract

The intestinal mucosal epithelium forms a barrier between luminal contents and the body. MicroRNAs (miRNAs) regulate mucosal homeostasis by controlling inflammatory responses and structural integrity. Here, we discovered a protective role for miR147 in intestinal inflammation using a miR147tdTomato reporter mouse. miR147 was enriched in the intestines, with the highest expression in the colonic epithelial cells at the luminal surface, with prominent expression in differentiated enterocytes. Mice with general or intestinal epithelial deletion of miR147 showed increased intestinal inflammation and diminished mucosal healing during colitis. RNA sequencing of miR147-deficient cells showed dysregulated immune signaling, with upregulated proinflammatory cytokine pathways and reduced type I interferon responses and revealed Ndufa4 as a likely miR147 target. Ndufa4, a mitochondrial protein regulating energy metabolism and inflammation, was elevated at the crypt base, inversely correlating with miR147. Mice lacking the miR147 binding site in Ndufa4’s 3′-UTR phenocopied miR147-deficient mice during colitis. Spatial and single-cell transcriptomic analyses in murine and human colons showed mutually exclusive miR147 and Ndufa4 expression, consistent with a regulatory relationship in epithelial differentiation and metabolism. These findings underscore miR147’s role in intestinal homeostasis and mucosal healing, suggesting it as a therapeutic target for inflammatory bowel disease.

Authors

Agnieszka K. Czopik, Arash Dabiri, Chia-Hao Tung, Victoria Vaughn, Xiangsheng Huang, Jinlian Wang, Hui Li, Nicolas F. Moreno, Natalia V. Piwko, Katherine Figarella, Hongfang Liu, Zhongming Zhao, Xiaoyi Yuan, Holger K. Eltzschig

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Figure 4

Epithelial miR147 protects intestinal integrity during inflammation.

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Epithelial miR147 protects intestinal integrity during inflammation.
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Mice deficient in miR147 (miR147CMV) and controls (C57BL/6J) were treated with 3.5% DSS in drinking water followed by 2 days of water. (A) Weight change in the experimental groups. (B) Colon length measured at the conclusion of the experiment. (C) Representative medial colon histology from control and miR147-deficient mice. (D) Histopathology scoring (lymphocyte infiltration and epithelial damage) in miR147-deficient mice and controls. Organoids from miR147CMV and C57BL/6J mice were cultured with growth monitored daily. (E) Representative organoid images on day 9. (F) Organoid initiation rates per plated crypt over 9 days. (G) Organoid survival on day 9. Data in A–D represent pooled results from 2 experiments (9–10 mice/group). Data in E–G represent 2 mice per group. Male mice were used. Mice with intestinal epithelium–specific miR147 deficiency (miR147fl/fl Villin Cre+) and controls (Villin Cre+ and miR147fl/fl Villin Cre–) were treated with 3.5% DSS followed by 2 days of water. (H) Weight change during the experimental period. (I) Colon length at the end of the experiment. (J) Colon weight/length ratio. (K) Representative micrographs of the colons. (L) Inflammation score from colon histological sections. Representative colon length images in DSS-treated mice are shown for miR147fl/fl Villin Cre+ and Villin Cre+ (M), or miR147fl/fl Villin Cre+ and littermates (N) on day 4. (O) On day 5 of DSS treatment, mice were fasted, orally gavaged with FITC-dextran, and intestinal permeability was measured by serum FITC-dextran detection. Data shown as mean ± SEM; pooled results from 2 experiments; n = 8–11 male mice/group. *P < 0.05; **P < 0.01; ****P < 0.0001 by 1-way ANOVA (A and I), 1-way ANOVA with Šidák’s test (H) or Tukey’s test (G and O), or unpaired 2-tailed t test (B, D, F, J, and L).

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