Increased lethality and defective pulmonary clearance of Streptococcus pneumoniae in microsomal prostaglandin E
Jennifer M Dolan1, Jason B Weinberg2, Edmund O'Brien3
1Department of Epidemiology, School of Public Health, University of Michigan, Ann Arbor, Michigan;
Abstract:
The production of prostaglandin E2 (PGE2) increases dramatically during pneumococcal pneumonia, and this lipid mediator impairs alveolar macrophage (AM)-mediated innate immune responses. Microsomal prostaglandin E synthase-1 (mPGES-1) is a key enzyme involved in the synthesis of PGE2, and its expression is enhanced during bacterial infections. Genetic deletion of mPGES-1 in mice results in diminished PGE2 production and elevated levels of other prostaglandins after infection. Since PGE2 plays an important immunoregulatory role during bacterial pneumonia we assessed the impact of mPGES-1 deletion in the host defense against pneumococcal pneumonia in vivo and in AMs in vitro. Wild-type (WT) and mPGES-1 knockout (KO) mice were challenged with Streptococcus pneumoniae via the intratracheal route. Compared with WT animals, we observed reduced survival and increased lung and spleen bacterial burdens in mPGES-1 KO mice 24 and 48 h after S. pneumoniae infection. While we found modest differences between WT and mPGES-1 KO mice in pulmonary cytokines, AMs from mPGES-1 KO mice exhibited defective killing of ingested bacteria in vitro that was associated with diminished inducible nitric oxide synthase expression and reduced nitric oxide (NO) synthesis. Treatment of AMs from mPGES-1 KO mice with an NO donor restored bacterial killing in vitro. These results suggest that mPGES-1 plays a critical role in bacterial pneumonia and that genetic ablation of this enzyme results in diminished pulmonary host defense in vivo and in vitro. These results suggest that specific inhibition of PGE2 synthesis by targeting mPGES-1 may weaken host defense against bacterial infections.
Insights
Mice lacking microsomal prostaglandin E synthase-1 (mPGES-1) showed impaired defense against pneumococcal pneumonia, indicating mPGES-1 is crucial for host immunity against bacterial infections.
Area of Science:
- Immunology
- Microbiology
- Biochemistry
Background:
- Prostaglandin E2 (PGE2) production increases during pneumococcal pneumonia, suppressing alveolar macrophage (AM) immune responses.
- Microsomal prostaglandin E synthase-1 (mPGES-1) is a key enzyme in PGE2 synthesis, upregulated during bacterial infections.
Purpose of the Study:
- To investigate the role of mPGES-1 in host defense against Streptococcus pneumoniae infection.
- To assess the impact of mPGES-1 deletion on AM function in vitro and in vivo.
Main Methods:
- Comparison of wild-type (WT) and mPGES-1 knockout (KO) mice challenged with S. pneumoniae.
- In vitro assessment of bacterial killing by AMs from WT and mPGES-1 KO mice.
- Measurement of bacterial burden, survival rates, pulmonary cytokines, and nitric oxide (NO) synthesis.
Main Results:
- mPGES-1 KO mice exhibited reduced survival and increased bacterial burdens in lungs and spleen compared to WT mice.
- AMs from mPGES-1 KO mice showed defective bacterial killing in vitro, linked to reduced inducible nitric oxide synthase (iNOS) and NO production.
- NO donor treatment restored bacterial killing in vitro in AMs from mPGES-1 KO mice.
Conclusions:
- mPGES-1 plays a critical role in pulmonary host defense against pneumococcal pneumonia.
- Genetic deletion of mPGES-1 impairs bacterial clearance and host defense mechanisms.
- Targeting mPGES-1 to inhibit PGE2 synthesis may compromise host defense during bacterial infections.
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