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Impaired antibacterial host defense in mice lacking the N-formylpeptide receptor
1Laboratory of Host Defenses, National Institute of Allergy and Infectious Diseases, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA. jgao@nih.gov
Abstract:
N-formylpeptides derive from bacterial and mitochondrial proteins, and bind to specific receptors on mammalian phagocytes. Since binding induces chemotaxis and activation of phagocytes in vitro, it has been postulated that N-formylpeptide receptor signaling in vivo may be important in antimicrobial host defense, although direct proof has been lacking. Here we test this hypothesis in mice lacking the high affinity N-formylpeptide receptor (FPR), created by targeted gene disruption. FPR-/- mice developed normally, but had increased susceptibility to challenge with Listeria monocytogenes, as measured by increased mortality compared with wild-type littermates. FPR-/- mice also had increased bacterial load in spleen and liver 2 d after infection, which is before development of a specific cellular immune response, suggesting a defect in innate immunity. Consistent with this, neutrophil chemotaxis in vitro and neutrophil mobilization into peripheral blood in vivo in response to the prototype N-formylpeptide fMLF (formyl-methionyl-leucyl-phenylalanine) were both absent in FPR-/- mice. These results indicate that FPR functions in antibacterial host defense in vivo.
Insights
Mice lacking the N-formylpeptide receptor (FPR) showed increased susceptibility to bacterial infection, indicating FPR is crucial for innate immune defense against pathogens.
Area of Science:
- Immunology
- Microbiology
- Genetics
Background:
- N-formylpeptides from bacteria and mitochondria bind to N-formylpeptide receptors (FPR) on phagocytes.
- FPR signaling is postulated to be vital for antimicrobial host defense, but direct in vivo evidence was lacking.
Purpose of the Study:
- To investigate the in vivo role of the high-affinity N-formylpeptide receptor (FPR) in host defense against bacterial infection.
Main Methods:
- Generated gene-disrupted mice lacking the N-formylpeptide receptor (FPR-/-).
- Challenged FPR-/- mice and wild-type littermates with Listeria monocytogenes.
- Assessed mortality, bacterial load in spleen and liver, and neutrophil chemotaxis and mobilization.
Main Results:
- FPR-/- mice exhibited increased mortality and bacterial load compared to wild-type controls.
- Neutrophil chemotaxis in vitro and in vivo mobilization were absent in FPR-/- mice following fMLF stimulation.
- These findings suggest a defect in innate immunity in FPR-/- mice.
Conclusions:
- The N-formylpeptide receptor (FPR) plays a significant role in antibacterial host defense in vivo.
- FPR signaling is essential for effective innate immune responses against bacterial pathogens.