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Publication : Caspase-1-mediated pathway promotes generation of thromboinflammatory microparticles.

First Author  Rothmeier AS Year  2015
Journal  J Clin Invest Volume  125
Issue  4 Pages  1471-84
PubMed ID  25705884 Mgi Jnum  J:221900
Mgi Id  MGI:5641812 Doi  10.1172/JCI79329
Citation  Rothmeier AS, et al. (2015) Caspase-1-mediated pathway promotes generation of thromboinflammatory microparticles. J Clin Invest 125(4):1471-84
abstractText  Extracellular ATP is a signal of tissue damage and induces macrophage responses that amplify inflammation and coagulation. Here we demonstrate that ATP signaling through macrophage P2X7 receptors uncouples the thioredoxin (TRX)/TRX reductase (TRXR) system and activates the inflammasome through endosome-generated ROS. TRXR and inflammasome activity promoted filopodia formation, cellular release of reduced TRX, and generation of extracellular thiol pathway-dependent, procoagulant microparticles (MPs). Additionally, inflammasome-induced activation of an intracellular caspase-1/calpain cysteine protease cascade degraded filamin, thereby severing bonds between the cytoskeleton and tissue factor (TF), the cell surface receptor responsible for coagulation activation. This cascade enabled TF trafficking from rafts to filopodia and ultimately onto phosphatidylserine-positive, highly procoagulant MPs. Furthermore, caspase-1 specifically facilitated cell surface actin exposure, which was required for the final release of highly procoagulant MPs from filopodia. Together, the results of this study delineate a thromboinflammatory pathway and suggest that components of this pathway have potential as pharmacological targets to simultaneously attenuate inflammation and innate immune cell-induced thrombosis.
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