4.6 Article

Integrative Analysis of Colonic Biopsies from Inflammatory Bowel Disease Patients Identifies an Interaction Between Microbial Bile Acid-inducible Gene Abundance and Human Angiopoietin-like 4 Gene Expression

Journal

JOURNAL OF CROHNS & COLITIS
Volume 15, Issue 12, Pages 2078-2087

Publisher

OXFORD UNIV PRESS
DOI: 10.1093/ecco-jcc/jjab096

Keywords

Enteric microbiota; gene expression; inflammatory bowel disease

Funding

  1. National Institute of Diabetes and Digestive and Kidney Diseases of the National Institutes of Health [U01DK062423]
  2. Canadian Institutes of Health Research [CIHR]
  3. Canadian Association of Gastroenterology [CAG]
  4. Department of Medicine, Mount Sinai Hospital, Toronto

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Endoscopic inflammation affects the abundance of microbial bile acid-metabolizing genes and their interaction with Angptl4 in the intestinal mucosa of IBD patients. The relative abundance of microbial genes and their interaction with host genes may vary under different inflammatory conditions.
Background and Aims: Microbial-derived bile acids can modulate host gene expression, and their faecal abundance is decreased in active inflammatory bowel disease [IBD]. We analysed the impact of endoscopic inflammation on microbial genes involved in bile acid biotransformation, and their interaction with host transcriptome in the intestinal mucosa of IBD patients. Methods: Endoscopic mucosal biopsies were collected from non-inflamed and inflamed terminal ileum, ascending and sigmoid colon of IBD patients. Prediction of imputed metagenome functional content from 16S rRNA profile and real-time quantitative polymerase chain reaction [qPCR] were utsed to assess microbial bile acid biotransformation gene abundance, and RNA-seq was used for host transcriptome analysis. Linear regression and partial Spearman correlation accounting for age, sex, and IBD type were used to assess the association between microbial genes, inflammation, and host transcriptomics in each biopsy location. A Bayesian network [BN] analysis was fitted to infer the direction of interactions between IBD traits and microbial and host genes. Results: The inferred microbial gene pathway involved in secondary bile acid biosynthesis [ko00121 pathway] was depleted in inflamed terminal ileum of IBD patients compared with non-inflamed tissue. In non-inflamed sigmoid colon, the relative abundance of bile acid-inducible [baiCD] microbial genes was positively correlated with the host Angiopoietin-like 4 [Angptl4] gene expression. The BN analysis suggests that the microbial baiCD gene abundance could affect Angptl4 expression, and this interaction appears to be lost in the presence of inflammation. Conclusions: Endoscopic inflammation affects the abundance of crucial microbial bile acid-metabolising genes and their interaction with Angptl4 in intestinal mucosa of IBD patients.

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