Thrombin Induces Fibroblast CCL2/JE Production and Release via Coupling of PAR1to Gαqand Cooperation between ERK1/2 and Rho Kinase Signaling Pathways

Author:

Deng Xiaoling1,Mercer Paul F.1,Scotton Chris J.1,Gilchrist Annette2,Chambers Rachel C.1

Affiliation:

1. *Centre for Respiratory Research, University College London, London WC1E 6JJ, United Kingdom; and

2. Caden Biosciences, Madison, WI 53711

Abstract

Uncontrolled activation of the coagulation cascade after tissue injury has been implicated in both inflammation and tissue fibrosis. Thrombin exerts pluripotent cellular effects via its high-affinity receptor, proteinase-activated receptor-1 (PAR1) and signaling via Gαi/o, Gαq, or Gα12/13. Activation of PAR1on fibroblasts, a key effector cell in fibrosis, results in the induction of several mediators, including the potent monocyte and fibrocyte chemoattractant CCL2. The aim of this study was to identify the G protein and signaling pathway involved in PAR1-mediated CCL2 production and release. Using a novel PAR1antagonist that blocks the interaction between PAR1and Gαq, we report for the first time that PAR1coupling to Gαqis essential for thrombin-induced CCL2 gene expression and protein release in murine lung fibroblasts. We further demonstrate that these effects are mediated via the cooperation between ERK1/2 and Rho kinase signaling pathways: a calcium-independent protein kinase C (PKC), c-Raf, and ERK1/2 pathway was found to mediate PAR1-induced CCL2 gene transcription, whereas a phospholipase C, calcium-dependent PKC, and Rho kinase pathway influences CCL2 protein release. We propose that targeting the interaction between PAR1and Gαqmay allow us to selectively interfere with PAR1proinflammatory and profibrotic signaling, while preserving the essential role of other PAR1-mediated cellular responses.

Publisher

American Society for Cell Biology (ASCB)

Subject

Cell Biology,Molecular Biology

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