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Author Spotlight: Development of a Method for Identifying Small Molecular Antagonists of β2 Integrin Activation
Published on: February 2, 2024
The proline-rich tyrosine kinase Pyk2 modulates integrin-mediated neutrophil adhesion and reactive oxygen species
Jessica Canino1, Gianni Francesco Guidetti2, Luca Galgano1
1Department of Biology and Biotechnology, University of Pavia, Italy; Scuola Universitaria Superiore, IUSS, Pavia, Italy.
Abstract:
Neutrophils are first responders in infection and inflammation. They are able to roll, adhere and transmigrate through the endothelium to reach the site of infection, where they fight pathogens through secretion of granule contents, production of reactive oxygen species, extrusion of neutrophil extracellular traps, and phagocytosis. In this study we explored the role of the non-receptor focal adhesion kinase Pyk2 in neutrophil adhesion and activation. Using a specific Pyk2 pharmacological inhibitor, PF-4594755, as well as Pyk2-deficient murine neutrophils, we found that Pyk2 is activated upon integrin αMβ2-mediated neutrophil adhesion to fibrinogen. This process is triggered by Src family kinases-mediated phosphorylation and supported by Pyk2 autophosphorylation on Y402. In neutrophil adherent to fibrinogen, Pyk2 activates PI3K-dependent pathways promoting the phosphorylation of Akt and of its downstream effector GSK3. Pyk2 also dynamically regulates MAP kinases in fibrinogen-adherent neutrophils, as it stimulates p38MAPK but negatively regulates ERK1/2. Pharmacological inhibition of Pyk2 significantly prevented adhesion of human neutrophils to fibrinogen, and neutrophils from Pyk2-knockout mice showed a reduced ability to adhere compared to wildtype cells. Accordingly, neutrophil adhesion to fibrinogen was reduced upon inhibition of p38MAPK but potentiated by ERK1/2 inhibition. Neutrophil adherent to fibrinogen, but not to polylysine, were able to produce ROS upon lipopolysaccharide challenge and ROS production was completely suppressed upon inhibition of Pyk2. By contrast PMA-induced ROS production by neutrophil adherent to either fibrinogen or polylysine was independent from Pyk2. Altogether these results demonstrate that Pyk2 is an important effector in the coordinated puzzle regulating neutrophil adhesion and activation.
Insights
Focal adhesion kinase Pyk2 is crucial for neutrophil adhesion and activation during infection. Inhibiting Pyk2 reduces neutrophil adhesion and reactive oxygen species production, highlighting its role in immune response.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Neutrophils are critical immune cells involved in fighting infection and inflammation.
- Their functions include adhesion, transmigration, and pathogen clearance via various mechanisms.
- The role of focal adhesion kinase Pyk2 in neutrophil function remains largely unexplored.
Purpose of the Study:
- To investigate the role of Pyk2 in neutrophil adhesion and activation.
- To elucidate the signaling pathways regulated by Pyk2 in neutrophils.
Main Methods:
- Utilized a specific Pyk2 pharmacological inhibitor (PF-4594755).
- Employed Pyk2-deficient murine neutrophils.
- Assessed neutrophil adhesion to fibrinogen.
- Measured reactive oxygen species (ROS) production.
- Analyzed signaling pathways including PI3K/Akt/GSK3 and MAP kinases (p38 MAPK, ERK1/2).
Main Results:
- Pyk2 is activated upon integrin αMβ2-mediated neutrophil adhesion to fibrinogen, involving Src family kinases and Pyk2 autophosphorylation.
- Pyk2 activates PI3K-dependent pathways, promoting Akt and GSK3 phosphorylation.
- Pyk2 stimulates p38 MAPK and inhibits ERK1/2 in fibrinogen-adherent neutrophils.
- Pyk2 inhibition reduced human neutrophil adhesion to fibrinogen; Pyk2-knockout neutrophils showed reduced adhesion.
- Pyk2 inhibition suppressed lipopolysaccharide-induced ROS production in fibrinogen-adherent neutrophils.
Conclusions:
- Pyk2 is a key regulator of neutrophil adhesion to fibrinogen.
- Pyk2 plays a significant role in modulating neutrophil activation, including ROS production.
- Pyk2 is an important effector in the coordinated regulation of neutrophil adhesion and activation during immune responses.
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