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

PYK2 interacts with MyD88 and regulates MyD88-mediated NF-κB activation in macrophages

View through CrossRef
Abstract PYK2 regulates inflammation by modulating MyD88 signaling. PYK2, a major cell adhesion-activated tyrosine kinase, is highly expressed in macrophages and implicated in macrophage activation and inflammatory response. However, mechanisms by which PYK2 regulates inflammatory response are beginning to be understood. In this study, we demonstrate that PYK2 interacts with MyD88, a crucial signaling adaptor protein in LPS and PGN-induced NF-κB activation, in vitro and in macrophages. This interaction, increased in macrophages, stimulated by LPS, requires the death domain of MyD88. PYK2-deficient macrophages exhibit reduced phosphorylation and degradation of IκB, an inhibitor of NF-κB nuclear translocation, and decreased NF-κB activation and IL-1β expression by LPS. These results suggest that via interaction with MyD88, PYK2 is involved in modulating cytokine (e.g., LPS) stimulation of NF-κB activity and signaling, providing a mechanism underlying PYK2 regulation of an inflammatory response.
Title: PYK2 interacts with MyD88 and regulates MyD88-mediated NF-κB activation in macrophages
Description:
Abstract PYK2 regulates inflammation by modulating MyD88 signaling.
PYK2, a major cell adhesion-activated tyrosine kinase, is highly expressed in macrophages and implicated in macrophage activation and inflammatory response.
However, mechanisms by which PYK2 regulates inflammatory response are beginning to be understood.
In this study, we demonstrate that PYK2 interacts with MyD88, a crucial signaling adaptor protein in LPS and PGN-induced NF-κB activation, in vitro and in macrophages.
This interaction, increased in macrophages, stimulated by LPS, requires the death domain of MyD88.
PYK2-deficient macrophages exhibit reduced phosphorylation and degradation of IκB, an inhibitor of NF-κB nuclear translocation, and decreased NF-κB activation and IL-1β expression by LPS.
These results suggest that via interaction with MyD88, PYK2 is involved in modulating cytokine (e.
g.
, LPS) stimulation of NF-κB activity and signaling, providing a mechanism underlying PYK2 regulation of an inflammatory response.

Related Results

Régulation des tyrosine kinases FAK et Pyk2 par les ß-arrestines
Régulation des tyrosine kinases FAK et Pyk2 par les ß-arrestines
FAK (Focal Adhesion Kinase) et Pyk2 (Prolin-rich tyrosine kinase 2) sont deux tyrosine kinases non-récepteurs apparentées qui constituent la famille des Kinases des Adhésions Focal...
Abstract 1562: PYK2 and FAK in breast cancer
Abstract 1562: PYK2 and FAK in breast cancer
Abstract Proliferation and invasion of malignant tumor cells are mediated by multiple events, including activation of focal adhesion signalings and cytoskeleton remo...
Curcumin Promotes Apoptosis of Activated Hepatic Stellate Cells by Inhibiting Protein Expression of the MyD88 Pathway
Curcumin Promotes Apoptosis of Activated Hepatic Stellate Cells by Inhibiting Protein Expression of the MyD88 Pathway
AbstractActivation and proliferation of hepatic stellate cells (HSC) play an important role in the progress of liver fibrosis. HSC activation occurs in response to inflammatory cyt...
MyD88 Contributes to TLR3-Mediated NF-κB Activation and Cytokine Production in Macrophages
MyD88 Contributes to TLR3-Mediated NF-κB Activation and Cytokine Production in Macrophages
Toll-like receptor 3 (TLR3) initiates antiviral and inflammatory responses exclusively through the adaptor protein TRIF (TIR-domain-containing adapter-inducing interferon-β). In co...
Clinical Significance of MYD88 Mutation in Patients with Diffuse Large Cell Lymphoma
Clinical Significance of MYD88 Mutation in Patients with Diffuse Large Cell Lymphoma
Abstract Mutation of the MYD88 has recently been identified in activated B cell like diffuse large B cell lymphoma (DLBCL) and enhanced cell proliferation systems su...
Rôle des facteurs de transcription NOR1 et TLE1 dans les macrophages alternatifs humains
Rôle des facteurs de transcription NOR1 et TLE1 dans les macrophages alternatifs humains
L’athérosclérose est une maladie inflammatoire chronique de la paroi vasculaire à évolution lente et silencieuse dont les principaux facteurs de risque sont les dyslipidémies, l’ob...

Back to Top