Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Role of PAR2 in murine pulmonary pseudomonal infection

View through CrossRef
Proteinases can influence lung inflammation by various mechanisms, including via cleavage and activation of protease-activated receptors (PAR) such as PAR2. In addition, proteinases such as neutrophil and/or Pseudomonas-derived elastase can disarm PAR2 resulting in loss of PAR2 signaling. Currently, the role of PAR2 in host defense against bacterial infection is not known. Using a murine model of acute Pseudomonas aeruginosa pneumonia, we examined differences in the pulmonary inflammatory response between wild-type and PAR2−/−mice. Compared with wild-type mice, PAR2−/−mice displayed more severe lung inflammation and injury in response to P. aeruginosa infection as indicated by higher bronchoalveolar lavage fluid neutrophil numbers, protein concentration, and TNF-α levels. By contrast, IFN-γ levels were markedly reduced in PAR2−/−compared with wild-type mice. Importantly, clearance of P. aeruginosa was diminished in PAR2−/−mice. In vitro testing revealed that PAR2−/−neutrophils killed significantly less bacteria than wild-type murine neutrophils. Further, both neutrophils and macrophages from PAR2−/−mice displayed significantly reduced phagocytic efficiency compared with wild-type phagocytes. Stimulation of PAR2 on macrophages using a PAR2-activating peptide resulted in enhanced phagocytosis directly implicating PAR2 signaling in the phagocytic process. We conclude that genetic deletion of PAR2 is associated with decreased clearance of P. aeruginosa. Our data suggest that a deficiency in IFN-γ production and impaired bacterial phagocytosis are two potential mechanisms responsible for this defect.
Title: Role of PAR2 in murine pulmonary pseudomonal infection
Description:
Proteinases can influence lung inflammation by various mechanisms, including via cleavage and activation of protease-activated receptors (PAR) such as PAR2.
In addition, proteinases such as neutrophil and/or Pseudomonas-derived elastase can disarm PAR2 resulting in loss of PAR2 signaling.
Currently, the role of PAR2 in host defense against bacterial infection is not known.
Using a murine model of acute Pseudomonas aeruginosa pneumonia, we examined differences in the pulmonary inflammatory response between wild-type and PAR2−/−mice.
Compared with wild-type mice, PAR2−/−mice displayed more severe lung inflammation and injury in response to P.
aeruginosa infection as indicated by higher bronchoalveolar lavage fluid neutrophil numbers, protein concentration, and TNF-α levels.
By contrast, IFN-γ levels were markedly reduced in PAR2−/−compared with wild-type mice.
Importantly, clearance of P.
aeruginosa was diminished in PAR2−/−mice.
In vitro testing revealed that PAR2−/−neutrophils killed significantly less bacteria than wild-type murine neutrophils.
Further, both neutrophils and macrophages from PAR2−/−mice displayed significantly reduced phagocytic efficiency compared with wild-type phagocytes.
Stimulation of PAR2 on macrophages using a PAR2-activating peptide resulted in enhanced phagocytosis directly implicating PAR2 signaling in the phagocytic process.
We conclude that genetic deletion of PAR2 is associated with decreased clearance of P.
aeruginosa.
Our data suggest that a deficiency in IFN-γ production and impaired bacterial phagocytosis are two potential mechanisms responsible for this defect.

Related Results

Macrophage Factor Xa Signaling Promotes Cancer Immune Evasion
Macrophage Factor Xa Signaling Promotes Cancer Immune Evasion
Abstract Coagulation signaling through protease activated receptors (PARs) participates in inflammation and immunity. In cancer, tissue factor (TF) driven signaling ...
6-OR: PAR2 Downregulates Adipose LPL through MIF—A Novel Adipose Mechanism Contributing to the Development of Hypertriglyceridemia
6-OR: PAR2 Downregulates Adipose LPL through MIF—A Novel Adipose Mechanism Contributing to the Development of Hypertriglyceridemia
Lipoprotein lipase (LPL) is a key enzyme that hydrolyzes circulating triglycerides to release fatty acid (FA). In adipose tissue, LPL is required for lipid storage. However, it is ...
The PAR2 signal peptide prevents premature receptor cleavage and activation
The PAR2 signal peptide prevents premature receptor cleavage and activation
Abstract Unlike closely related GPCRs, protease-activated receptors (PAR1, PAR2, PAR3, and PAR4) have a predicted signal peptide at their N-terminus, which is encod...
The Role of PAR2 in MASLD Progression and HCC Development
The Role of PAR2 in MASLD Progression and HCC Development
Metabolic dysfunction-associated steatotic liver disease (MASLD) has recently become the leading cause of chronic liver disease and can progress to hepatocellular carcinoma (HCC) t...
Efficacy of MEDI0618, a pH-dependent monoclonal antibody targeting PAR2, in preclinical models of migraine
Efficacy of MEDI0618, a pH-dependent monoclonal antibody targeting PAR2, in preclinical models of migraine
Abstract Protease activated receptor 2 (PAR2) is a G-protein coupled receptor expressed in meningeal neurons, fibroblasts and mast cells that may be targeted to trea...
Cometary Physics Laboratory: spectrophotometric experiments
Cometary Physics Laboratory: spectrophotometric experiments
<p><strong><span dir="ltr" role="presentation">1. Introduction</span></strong&...

Back to Top