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Published on: July 16, 2019
Mechanisms of interferon-γ production by neutrophils and its function during Streptococcus pneumoniae pneumonia
John C Gomez1, Mitsuhiro Yamada, Jessica R Martin
11 Center for Airways Disease, Department of Medicine.
Abstract:
Bacterial pneumonia is a common public health problem associated with significant mortality, morbidity, and cost. Neutrophils are usually the earliest leukocytes to respond to bacteria in the lungs. Neutrophils rapidly sequester in the pulmonary microvasculature and migrate into the lung parenchyma and alveolar spaces, where they perform numerous effector functions for host defense. Previous studies showed that migrated neutrophils produce IFN-γ early during pneumonia induced by Streptococcus pneumoniae and that early production of IFN-γ regulates bacterial clearance. IFN-γ production by neutrophils requires Rac2, Hck/Lyn/Fgr Src family tyrosine kinases, and NADPH oxidase. Our current studies examined the mechanisms that regulate IFN-γ production by lung neutrophils during acute S. pneumoniae pneumonia in mice and its function. We demonstrate that IFN-γ production by neutrophils is a tightly regulated process that does not require IL-12. The adaptor molecule MyD88 is critical for IFN-γ production by neutrophils. The guanine nucleotide exchange factor CalDAG-GEFI modulates IFN-γ production. The CD11/CD18 complex, CD44, Toll-like receptors 2 and 4, TRIF, and Nrf2 are not required for IFN-γ production by neutrophils. The recently described neutrophil-dendritic cell hybrid cell, identified by its expression of Ly6G and CD11c, is present at low numbers in pneumonic lungs and is not a source of IFN-γ. IFN-γ produced by neutrophils early during acute S. pneumoniae pneumonia induces transcription of target genes in the lungs, which are critical for host defense. These studies underline the complexity of the neutrophil responses during pneumonia in the acute inflammatory response and in subsequent resolution or initiation of immune responses.
Insights
Neutrophils produce interferon-gamma (IFN-γ) early in Streptococcus pneumoniae pneumonia, a crucial process regulated by MyD88 and CalDAG-GEFI for bacterial clearance and host defense.
Area of Science:
- Immunology
- Microbiology
- Pulmonary Medicine
Background:
- Bacterial pneumonia poses a significant public health challenge.
- Neutrophils are key early responders to lung infections, migrating to clear pathogens.
- Previous research indicated neutrophil-derived interferon-gamma (IFN-γ) aids bacterial clearance in pneumonia.
Purpose of the Study:
- To investigate the regulatory mechanisms of IFN-γ production by neutrophils during acute Streptococcus pneumoniae pneumonia in mice.
- To elucidate the functional role of neutrophil-derived IFN-γ in host defense against pneumonia.
Main Methods:
- Utilized a mouse model of acute Streptococcus pneumoniae pneumonia.
- Examined the requirement of various signaling molecules and cell types for IFN-γ production using genetic and molecular techniques.
- Assessed the impact of neutrophil-derived IFN-γ on host defense gene expression.
Main Results:
- Neutrophil IFN-γ production is a tightly regulated process, independent of IL-12.
- The adaptor molecule MyD88 is essential for neutrophil IFN-γ production.
- CalDAG-GEFI modulates IFN-γ production, while CD11/CD18, CD44, TLR2, TLR4, TRIF, and Nrf2 are not required.
- Neutrophil-derived IFN-γ induces host defense genes in the lungs.
Conclusions:
- Neutrophil IFN-γ production during S. pneumoniae pneumonia is a complex, regulated process.
- MyD88 and CalDAG-GEFI are critical regulators of this pathway.
- Neutrophil-derived IFN-γ plays a vital role in the early host defense response to bacterial pneumonia.
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