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Legionella pneumophila Outer Membrane Vesicles: Isolation and Analysis of Their Pro-inflammatory Potential on Macrophages
Published on: February 22, 2017
Altered inflammatory responses in TLR5-deficient mice infected with Legionella pneumophila
Thomas R Hawn1, William R Berrington, Ian A Smith
1Department of Medicine, University of Washington School of Medicine, Seattle, WA 98195, USA. thawn@u.washington.edu
Abstract:
Legionella pneumophila (Lp), an important cause of morbidity and mortality from pneumonia, infects alveolar macrophages (AMs) and is recognized by several TLRs as well as Birc1e (NAIP5) and IL-1 converting enzyme-protease activating factor. We examined the role of TLR5 during the murine response to aerosolized Lp infection. At 4 h after infection, Tlr5(-/-) mice had lower numbers of polymorphonuclear neutrophils (PMNs) in their broncho-alveolar lavage fluid in comparison to wild-type (WT) mice. At 24 and 72 h, the PMN recruitment was similar. WT mice infected with a flagellin-deficient strain (LpFlaA-) also showed an impaired early PMN response at 4 h compared with those infected with the WT strain. There was no consistent difference in bacterial counts at any of the time points when comparing the Tlr5(-/-) and WT mice. However, at 6 days after infection, the Tlr5(-/-) mice had increased leukocytic infiltrates in the alveolar and peribronchial interstitial spaces that were consistent with organizing pneumonia. We also examined the role of TLR5 during macrophage infection. In contrast to bone marrow-derived macrophages, AMs secreted TNF-alpha after stimulation with purified flagellin. In addition, WT, but not Tlr5(-/-), AMs produced TNF-alpha after stimulation with Lp. Live LpFlaA- did not induce TNF-alpha secretion in AM. These results suggested that AMs recognize Lp flagellin and that a majority of the Lp-induced TNF-alpha response is TLR5-mediated. Thus, TLR5 mediates recognition of Lp in AMs and performs a distinct role during the in vivo pulmonary immune response through regulation of early PMN recruitment and subsequent later development of pneumonia.
Insights
Toll-like receptor 5 (TLR5) plays a crucial role in the early immune response to Legionella pneumophila (Lp) infection. TLR5 mediates the recognition of Lp flagellin by alveolar macrophages, influencing neutrophil recruitment and pneumonia development.
Area of Science:
- Immunology
- Microbiology
- Pulmonary Medicine
Background:
- Legionella pneumophila (Lp) is a significant cause of pneumonia.
- Alveolar macrophages (AMs) are key cells infected by Lp.
- TLR5 is a pattern recognition receptor involved in innate immunity.
Purpose of the Study:
- To investigate the role of TLR5 in the murine response to aerosolized Lp infection.
- To determine how TLR5 influences immune cell recruitment and cytokine production during Lp infection.
- To elucidate the mechanism of Lp recognition by AMs via TLR5.
Main Methods:
- Comparative analysis of wild-type (WT) and Tlr5(-/-) mice infected with Lp.
- Assessment of broncho-alveolar lavage fluid for immune cell infiltration (PMNs).
- Measurement of bacterial counts and histological examination for pneumonia.
- In vitro stimulation of macrophages with Lp and its components (flagellin).
- Quantification of TNF-alpha secretion by macrophages.
Main Results:
- Tlr5(-/-) mice exhibited reduced early neutrophil recruitment (PMNs) at 4 hours post-infection.
- Infection with a flagellin-deficient Lp strain also impaired early PMN response.
- No significant differences in bacterial load were observed between WT and Tlr5(-/-) mice.
- Tlr5(-/-) mice showed increased leukocytic infiltrates and signs of organizing pneumonia at later time points.
- AMs from WT mice, but not Tlr5(-/-) mice, produced TNF-alpha in response to Lp and flagellin.
Conclusions:
- TLR5 is essential for early PMN recruitment in response to Lp.
- AMs recognize Lp flagellin, and this recognition is largely mediated by TLR5.
- TLR5 plays a distinct role in regulating the pulmonary immune response to Lp, impacting both early inflammation and later pneumonia development.

