Physiology and pathophysiology of proteinase-activated receptors (PARs): Proteinases as hormone-like signal messengers: PARs and more
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Activation and inhibition of G protein-coupled receptors by cell-penetrating membrane-tethered peptides
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Proteinase-activated receptor-4: Evaluation of tethered ligand-derived peptides as probes for receptor function and as inflammatory agonists in vivo
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Neutrophils and the kallikrein-kinin system in proteinase-activated receptor 4-mediated inflammation in rodents
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Signal transduction for proteinase-activated receptor-2-triggered prostaglandin E2 formation in human lung epithelial cells
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Intracellular signaling for prostaglandin E2 production caused by activation of the thrombin receptor, PAR-1, in the rat gastric mucosal epithelial cells
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SEKIGUCHI, F. et al. 2005. Intracellular signaling for prostaglandin E2 production caused by activation of the thrombin receptor, PAR-1, in the rat gastric mucosal epithelial cells. J. Pharmacol. Sci. 97: 108P.
Distinct roles for protease-activated receptors 1 and 2 in vasomotor modulation in rat superior mesenteric artery
KAWABATA, A. et al. 2004. Distinct roles for protease-activated receptors 1 and 2 in vasomotor modulation in rat superior mesenteric artery. Cardiovasc. Res. 61: 683-692.
Vascular actions of thrombin receptor-derived polypeptides: Structure-activity profiles for contractile and relaxant effects in rat aorta
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Proteinase-activated receptor-2-mediated relaxation in mouse tracheal and bronchial smooth muscle: Signal transduction mechanisms and distinct agonist sensitivity
KAWABATA, A. et al. 2004. Proteinase-activated receptor-2-mediated relaxation in mouse tracheal and bronchial smooth muscle: signal transduction mechanisms and distinct agonist sensitivity. J. Pharmacol. Exp. Ther. 311: 402-410.
Proteinase-activated receptors: Structural requirements for activity, receptor cross-reactivity, and receptor selectivity of receptor-activating peptides
HOLLENBERG, M.D. et al. 1997. Proteinase-activated receptors: structural requirements for activity, receptor cross-reactivity, and receptor selectivity of receptor-activating peptides. Can. J. Physiol. Pharmacol. 75: 832-841.
Mechanisms for modulation of mouse gastrointestinal motility by proteinase-activated receptor (PAR)-1 and -2 in vitro
SEKIGUCHI, F. et al. 2005. Mechanisms for modulation of mouse gastrointestinal motility by proteinase-activated receptor (PAR)-1 and -2 in vitro. Life Sci. 78: 950-957.