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The evolutionarily ancient FOXA transcription factors shape the murine gut microbiome via control of epithelial glycosylation

  • Avital Swisa
  • , Julia Kieckhaefer
  • , Scott G. Daniel
  • , Hilana El-Mekkoussi
  • , Hannah M. Kolev
  • , Mark Tigue
  • , Chunsheng Jin
  • , Charles Antoine Assenmacher
  • , Lenka Dohnalová
  • , Christoph A. Thaiss
  • , Niclas G. Karlsson
  • , Kyle Bittinger
  • , Klaus H. Kaestner*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Evolutionary adaptation of multicellular organisms to a closed gut created an internal microbiome differing from that of the environment. Although the composition of the gut microbiome is impacted by diet and disease state, we hypothesized that vertebrates promote colonization by commensal bacteria through shaping of the apical surface of the intestinal epithelium. Here, we determine that the evolutionarily ancient FOXA transcription factors control the composition of the gut microbiome by establishing favorable glycosylation on the colonic epithelial surface. FOXA proteins bind to regulatory elements of a network of glycosylation enzymes, which become deregulated when Foxa1 and Foxa2 are deleted from the intestinal epithelium. As a direct consequence, microbial composition shifts dramatically, and spontaneous inflammatory bowel disease ensues. Microbiome dysbiosis was quickly reversed upon fecal transplant into wild-type mice, establishing a dominant role for the host epithelium, in part mediated by FOXA factors, in controlling symbiosis in the vertebrate holobiont.

Original languageEnglish
Pages (from-to)2069-2084.e8
JournalDevelopmental Cell
Volume59
Issue number16
DOIs
StatePublished - 19 Aug 2024
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2024 Elsevier Inc.

Keywords

  • FOXA
  • glycosylation
  • inflammatory bowel disease
  • intestinal epithelium
  • microbiome

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