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Publication : PAR2-Mediated cAMP Generation Suppresses TRPV4-Dependent Ca<sup>2+</sup> Signaling in Alveolar Macrophages to Resolve TLR4-Induced Inflammation.

First Author  Rayees S Year  2019
Journal  Cell Rep Volume  27
Issue  3 Pages  793-805.e4
PubMed ID  30995477 Mgi Jnum  J:284419
Mgi Id  MGI:6381128 Doi  10.1016/j.celrep.2019.03.053
Citation  Rayees S, et al. (2019) PAR2-Mediated cAMP Generation Suppresses TRPV4-Dependent Ca(2+) Signaling in Alveolar Macrophages to Resolve TLR4-Induced Inflammation. Cell Rep 27(3):793-805.e4
abstractText  Alveolar macrophages (AMs), upon sensing pathogens, trigger host defense by activating toll-like receptor 4 (TLR4), but the counterbalancing mechanisms that deactivate AM inflammatory signaling and prevent lethal edema, the hallmark of acute lung injury (ALI), remain unknown. Here, we demonstrate the essential role of AM protease-activating receptor 2 (PAR2) in rapidly suppressing inflammation to prevent long-lasting injury. We show that thrombin, released during TLR4-induced lung injury, directly activates PAR2 to generate cAMP, which abolishes Ca(2+) entry through the TRPV4 channel. Deletion of PAR2 and thus the accompanying cAMP generation augments Ca(2+) entry via TRPV4, causing sustained activation of the transcription factor NFAT to produce long-lasting TLR4-mediated inflammatory lung injury. Rescuing thrombin-sensitive PAR2 expression or blocking TRPV4 activity in PAR2-null AMs restores their capacity to resolve inflammation and reverse lung injury. Thus, activation of the thrombin-induced PAR2-cAMP cascade in AMs suppresses TLR4 inflammatory signaling to reinstate tissue integrity.
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