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IL-22 Upregulates Epithelial Claudin-2 to Drive Diarrhea and Enteric Pathogen Clearance

Authors :
Sachiko Tsukita
Yang Xin Fu
Jerrold R. Turner
Le Shen
Gurminder Singh
Anne Sailer
Wei-Qi He
Sunil Yeruva
Juan Min Zha
Wei-Ting Kuo
Bingkun Zhang
Pei-Yun Tsai
Matthew A. Odenwald
Atsushi Tamura
Source :
Cell Host & Microbe. 21:671-681.e4
Publication Year :
2017
Publisher :
Elsevier BV, 2017.

Abstract

Diarrhea is a host response to enteric pathogens, but its impact on pathogenesis remains poorly defined. By infecting mice with the attaching and effacing bacteria Citrobacter rodentium, we defined the mechanisms and contributions of diarrhea and intestinal barrier loss to host defense. Increased permeability occurred within 2 days of infection and coincided with IL-22-dependent upregulation of the epithelial tight junction protein claudin-2. Permeability increases were limited to small molecules, as expected for the paracellular water and Na+ channel formed by claudin-2. Relative to wild-type, claudin-2-deficient mice experienced severe disease, including increased mucosal colonization by C. rodentium, prolonged pathogen shedding, exaggerated cytokine responses, and greater tissue injury. Conversely, transgenic claudin-2 overexpression reduced disease severity. Chemically induced osmotic diarrhea reduced colitis severity and C. rodentium burden in claudin-2-deficient, but not transgenic, mice, demonstrating that claudin-2-mediated protection is the result of enhanced water efflux. Thus, IL-22-induced claudin-2 upregulation drives diarrhea and pathogen clearance.

Details

ISSN :
19313128
Volume :
21
Database :
OpenAIRE
Journal :
Cell Host & Microbe
Accession number :
edsair.doi.dedup.....53c3a914d43c27816e4c2054cda41231
Full Text :
https://doi.org/10.1016/j.chom.2017.05.009