Transgenic Mice Expressing Human Proteinase 3 Exhibit Sustained Neutrophil-Associated Peritonitis.
Katherine R MartinMagali Pederzoli-RibeilEmeline PacreauSabrina Sofia BurgenerAlbert DahdahCéline CandalhEvelyne LauretMarc ForetzLuc MouthonBruno LucasNathalie ThieblemontCharaf BenarafaPierre LaunayVéronique Witko-SarsatPublished in: Journal of immunology (Baltimore, Md. : 1950) (2017)
Proteinase 3 (PR3) is a myeloid serine protease expressed in neutrophils, monocytes, and macrophages. PR3 has a number of well-characterized proinflammatory functions, including cleaving and activating chemokines and controlling cell survival and proliferation. When presented on the surface of apoptotic neutrophils, PR3 can disrupt the normal anti-inflammatory reprogramming of macrophages following the phagocytosis of apoptotic cells. To better understand the function of PR3 in vivo, we generated a human PR3 transgenic mouse (hPR3Tg). During zymosan-induced peritonitis, hPR3Tg displayed an increased accumulation of neutrophils within the peritoneal cavity compared with wild-type control mice, with no difference in the recruitment of macrophages or B or T lymphocytes. Mice were also subjected to cecum ligation and puncture, a model used to induce peritoneal inflammation through infection. hPR3Tg displayed decreased survival rates in acute sepsis, associated with increased neutrophil extravasation. The decreased survival and increased neutrophil accumulation were associated with the cleavage of annexin A1, a powerful anti-inflammatory protein known to facilitate the resolution of inflammation. Additionally, neutrophils from hPR3Tg displayed enhanced survival during apoptosis compared with controls, and this may also contribute to the increased accumulation observed during the later stages of inflammation. Taken together, our data suggest that human PR3 plays a proinflammatory role during acute inflammatory responses by affecting neutrophil accumulation, survival, and the resolution of inflammation.
Keyphrases
- oxidative stress
- anti inflammatory
- endothelial cells
- wild type
- cell death
- cell cycle arrest
- induced apoptosis
- induced pluripotent stem cells
- liver failure
- pluripotent stem cells
- drug induced
- signaling pathway
- diabetic rats
- high glucose
- free survival
- acute kidney injury
- dendritic cells
- type diabetes
- intensive care unit
- immune response
- endoplasmic reticulum stress
- electronic health record
- machine learning
- small molecule
- aortic dissection
- pi k akt
- amino acid