NOD2/CARD15 mediates induction of the antimicrobial peptide human beta-defensin-2.

Eske Voss, Jan Wehkamp, Kai Wehkamp, Eduard F Stange, Jens M Schröder, Jürgen Harder

Department of Dermatology, University Hospital Schleswig-Holstein, Campus Kiel, Schittenhelmstrasse 7, 24105 Kiel, Germany.

Journal Article: Journal of Biological Chemistry (impact factor: 5.33). 02/2006; 281(4):2005-11. DOI: 10.1074/jbc.M511044200

Abstract

Production of inducible antimicrobial peptides offers a first and rapid defense response of epithelial cells against invading microbes. Human beta-defensin-2 (hBD-2) is an antimicrobial peptide induced in various epithelia upon extracellular as well as intracellular bacterial challenge. Nucleotide-binding oligomerization domain protein 2 (NOD2/CARD15) is a cytosolic protein involved in intracellular recognition of microbes by sensing peptidoglycan fragments (e.g. muramyl dipeptide). We used luciferase as a reporter gene for a 2.3-kb hBD-2 promoter to test the hypothesis that NOD2 mediates the induction of hBD-2. Activation of NOD2 in NOD2-overexpressing human embryonic kidney 293 cells through its ligand muramyl dipeptide (MDP) induced hBD-2 expression. In contrast, overexpression of NOD2 containing the 3020insC frame-shift mutation, the most frequent NOD2 variant associated with Crohn disease, resulted in defective induction of hBD-2 through MDP. Luciferase gene reporter analyses and site-directed mutagenesis experiments demonstrated that functional binding sites for NF-kappaB and AP-1 in the hBD-2 promoter are required for NOD2-mediated induction of hBD-2 through MDP. Moreover, the NF-kappaB inhibitor Helenalin as well as a super-repressor form of the NF-kappaB inhibitor IkappaB strongly inhibited NOD2-mediated hBD-2 promoter activation. Expression of NOD2 was detected in primary keratinocytes, and stimulation of these cells with MDP induced hBD-2 peptide release. In contrast, small interference RNA-mediated down-regulation of NOD2 expression in primary keratinocytes resulted in a defective induction of hBD-2 upon MDP treatment. Together, these data suggest that NOD2 serves as an intracellular pattern recognition receptor to enhance host defense by inducing the production of antimicrobial peptides such as hBD-2.

Source: PubMed

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Keywords

2.3-kb hBD-2 promoter
 
3020insC frame-shift mutation
 
antimicrobial peptide induced
 
antimicrobial peptides
 
epithelial cells
 
inducible antimicrobial peptides
 
intracellular bacterial challenge
 
intracellular pattern recognition receptor
 
ligand muramyl dipeptide
 
Luciferase gene reporter analyses
 
NF-kappaB inhibitor Helenalin
 
NF-kappaB inhibitor IkappaB
 
NOD2 expression
 
NOD2 mediates
 
NOD2-overexpressing human embryonic kidney 293 cells
 
Nucleotide-binding oligomerization domain protein 2
 
peptidoglycan fragments
 
primary keratinocytes
 
rapid defense response
 
various epithelia