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Pathogen specific, IRF3-dependent signaling and innate resistance to human kidney infection.

Authors :
Hans Fischer
Nataliya Lutay
Bryndís Ragnarsdóttir
Manisha Yadav
Klas Jönsson
Alexander Urbano
Ahmed Al Hadad
Sebastian Rämisch
Petter Storm
Ulrich Dobrindt
Ellaine Salvador
Diana Karpman
Ulf Jodal
Catharina Svanborg
Source :
PLoS Pathogens, Vol 6, Iss 9, p e1001109 (2010)
Publication Year :
2010
Publisher :
Public Library of Science (PLoS), 2010.

Abstract

The mucosal immune system identifies and fights invading pathogens, while allowing non-pathogenic organisms to persist. Mechanisms of pathogen/non-pathogen discrimination are poorly understood, as is the contribution of human genetic variation in disease susceptibility. We describe here a new, IRF3-dependent signaling pathway that is critical for distinguishing pathogens from normal flora at the mucosal barrier. Following uropathogenic E. coli infection, Irf3(-/-) mice showed a pathogen-specific increase in acute mortality, bacterial burden, abscess formation and renal damage compared to wild type mice. TLR4 signaling was initiated after ceramide release from glycosphingolipid receptors, through TRAM, CREB, Fos and Jun phosphorylation and p38 MAPK-dependent mechanisms, resulting in nuclear translocation of IRF3 and activation of IRF3/IFNβ-dependent antibacterial effector mechanisms. This TLR4/IRF3 pathway of pathogen discrimination was activated by ceramide and by P-fimbriated E. coli, which use ceramide-anchored glycosphingolipid receptors. Relevance of this pathway for human disease was supported by polymorphic IRF3 promoter sequences, differing between children with severe, symptomatic kidney infection and children who were asymptomatic bacterial carriers. IRF3 promoter activity was reduced by the disease-associated genotype, consistent with the pathology in Irf3(-/-) mice. Host susceptibility to common infections like UTI may thus be strongly influenced by single gene modifications affecting the innate immune response.

Details

Language :
English
ISSN :
15537366 and 15537374
Volume :
6
Issue :
9
Database :
Directory of Open Access Journals
Journal :
PLoS Pathogens
Publication Type :
Academic Journal
Accession number :
edsdoj.5e7bfc5267f147b6ba2d183cd497fd21
Document Type :
article
Full Text :
https://doi.org/10.1371/journal.ppat.1001109