Publication

Gut Commensal Bacteria and Regional Wnt Gene Expression in the Proximal Versus Distal Colon

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Last modified
  • 02/20/2025
Type of Material
Authors
    Philipp Neumann, Emory UniversityStefan Koch, Emory UniversityRoland Hilgarth, Emory UniversityErnesto Perez-Chanona, University of North CarolinaPatricia Denning, Emory UniversityChristian Jobin, University of FloridaAsma Nusrat, Emory University
Language
  • English
Date
  • 2014-03-01
Publisher
  • American Society for Investigative Pathology (ASIP)
Publication Version
Copyright Statement
  • © 2014 American Society for Investigative Pathology. Open Access
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 0002-9440
Volume
  • 184
Issue
  • 3
Start Page
  • 592
End Page
  • 599
Grant/Funding Information
  • Supported by the NIH grants R01 DK055679 and DK059888 (A.N.) and R01HD059122 (P.D.) and the German Research Foundation (DFG) grant NE 1834/1-1 (P.A.N.).
Supplemental Material (URL)
Abstract
  • Regional expression of Wingless/Int (Wnt) genes plays a central role in regulating intestinal development and homeostasis. However, our knowledge of such regional Wnt proteins in the colon remains limited. To understand further the effect of Wnt signaling components in controlling intestinal epithelial homeostasis, we investigated whether the physiological heterogeneity of the proximal and distal colon can be explained by differential Wnt signaling. With the use of a Wnt signaling-specific PCR array, expression of 84 Wnt-mediated signal transduction genes was analyzed, and a differential signature of Wnt-related genes in the proximal versus distal murine colon was identified. Several Wnt agonists (Wnt5a, Wnt8b, and Wnt11), the Wnt receptor frizzled family receptor 3, and the Wnt inhibitory factor 1 were differentially expressed along the colon length. These Wnt signatures were associated with differential epithelial cell proliferation and migration in the proximal versus distal colon. Furthermore, reduced Wnt/β-catenin activity and decreased Wnt5a and Wnt11 expression were observed in mice lacking commensal bacteria, an effect that was reversed by conventionalization of germ-free mice. Interestingly, myeloid differentiation primary response gene 88 knockout mice showed decreased Wnt5a levels, indicating a role for Toll-like receptor signaling in regulating Wnt5a expression. Our results suggest that the morphological and physiological heterogeneity within the colon is in part facilitated by the differential expression of Wnt signaling components and influenced by colonization with bacteria. Copyright © 2014 American Society for Investigative Pathology.
Author Notes
  • Address correspondence to Asma Nusrat, M.D., Epithelial Pathobiology and Mucosal Inflammation Research Unit, Emory University, Michael St. 615, R# 105, Atlanta, GA 30322. Email: anusrat@emory.edu
Keywords
Research Categories
  • Health Sciences, Pharmacology
  • Health Sciences, Pathology

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