The role of DNA sensing and innate immune receptor TLR9 in otitis media

Author:

Leichtle Anke12,Hernandez Michelle34,Lee Jasmine1,Pak Kwang1,Webster Nicholas J5,Wollenberg Barbara2,Wasserman Stephen I3,Ryan Allen F1

Affiliation:

1. Departments of Surgery/Otolaryngology

2. Department of Otolaryngology, University of Lübeck, Lübeck, Germany

3. Departments of Medicine/Rheumatology, Allergy and Immunology

4. Department of Pediatrics, Division of Allergy, Immunology, Rheumatology, and Infectious Diseases, Chapel Hill School of Medicine, University of North Carolina, North Carolina, USA

5. Departments of Medicine/Endocrinology, University of California, San Diego, and San Diego Veterans Administration Medical Center, La Jolla, California, USA

Abstract

Otitis media (OM), a common infectious disease in children, is associated with bacterial middle ear (ME) infection. Toll-like receptors (TLRs) are important mediators of innate immune responses, and TLR9 specifically recognizes the unmethylated cytidine-phosphate-guanosine (CpG) motifs in bacterial DNA. Additional sensors of foreign DNA have recently been identified. The role of DNA sensing and TLR9 was investigated in a murine model of OM induced by non-typeable Haemophilus influenzae (NTHi). Expression of genes related to DNA-sensing pathways involved in innate immunity was assessed via DNA microarray, qPCR and immunohistochemistry. Middle ear responses to NTHi were examined in wild-type and TLR9−/− mice by histopathology and bacterial culture. Expression of TLR9 signaling genes was modestly up-regulated during OM, as was TLR9 protein in both ME mucosal cells and infiltrating leukocytes. However, genes known to be regulated by CpG DNA were dramatically up-regulated, as were genes involved in DNA sensing by DIA, Pol-III and AIM2. Toll-like receptor 9 deletion significantly prolonged the inflammatory response induced by NTHi in the ME and delayed bacterial clearance. The results suggest that DNA sensing via TLR9 plays a role in OM pathogenesis and recovery. Alternative forms of DNA sensing may also contribute to OM.

Publisher

SAGE Publications

Subject

Infectious Diseases,Cell Biology,Molecular Biology,Immunology,Microbiology

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