Literature DB >> 15199093

Proteinase-activated receptor-2-mediated relaxation in mouse tracheal and bronchial smooth muscle: signal transduction mechanisms and distinct agonist sensitivity.

Atsufumi Kawabata1, Satoko Kubo, Tsuyoshi Ishiki, Naoyuki Kawao, Fumiko Sekiguchi, Ryotaro Kuroda, Morley D Hollenberg, Toru Kanke, Naohiro Saito.   

Abstract

We characterized the tracheal and bronchial relaxation caused by proteinase-activated receptor-2 (PAR-2) activation in ddY mice and/or in wild-type and PAR-2-knockout mice of C57BL/6 background. Ser-Leu-Ile-Gly-Arg-Leu-amide (SLIGRL-NH(2)) and Thr-Phe-Leu-Leu-Arg-amide, PAR-2- and PAR-1-activating peptides, respectively, caused relaxation in the isolated ddY mouse trachea and main bronchus. The relaxation was abolished by specific inhibitors of cyclooxygenase (COX)-1, COX-2, mitogen-activated protein kinase kinase (MEK), and p38 MAP kinase. The MEK and p38 MAP kinase inhibitors did not affect prostaglandin E(2)-induced relaxation. Inhibitors of cytosolic Ca(2+)-dependent phospholipase A(2) (PLA), Ca(2+)-independent PLA(2), diacylglycerol lipase, tyrosine kinase, and protein kinase C exhibited no or only minor inhibitory effects on the PAR-mediated relaxation. Trypsin, a PAR-2 activator, and 2-furoyl-Leu-Ile-Gly-Arg-Leu-amide, a potent PAR-2-activating peptide, in addition to SLIGRL-NH(2), caused airway relaxation in wild-type C57BL/6 mice, as in ddY mice. In PAR-2-knockout mice, the peptide effects were absent and the potency of trypsin decreased. Desensitization of PAR-2 and/or PAR-1 greatly suppressed the relaxant effect of trypsin. The bronchial and tracheal tissues displayed distinct sensitivities toward trypsin and the PAR-2-activating peptides. Our data indicate an involvement of both COX-1 and COX-2, and the MEK-extracellular signal-regulated kinase and p38 MAP kinase signaling pathways in the PAR-2- and PAR-1-triggered relaxation of mouse airway tissue, and substantiate a role for PAR-2 in regulating both the trachea and bronchial responsiveness in the mouse lung.

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Year:  2004        PMID: 15199093     DOI: 10.1124/jpet.104.068387

Source DB:  PubMed          Journal:  J Pharmacol Exp Ther        ISSN: 0022-3565            Impact factor:   4.030


  8 in total

Review 1.  Role for β-arrestin in mediating paradoxical β2AR and PAR2 signaling in asthma.

Authors:  Julia K L Walker; Katherine A DeFea
Journal:  Curr Opin Pharmacol       Date:  2014-06-05       Impact factor: 5.547

2.  Stimulation of protease-activated receptor-2 inhibits airway eosinophilia, hyperresponsiveness and bronchoconstriction in a murine model of allergic inflammation.

Authors:  Benjamin A De Campo; Peter J Henry
Journal:  Br J Pharmacol       Date:  2005-04       Impact factor: 8.739

Review 3.  Protease-activated receptors and prostaglandins in inflammatory lung disease.

Authors:  Terence Peters; Peter J Henry
Journal:  Br J Pharmacol       Date:  2009-10       Impact factor: 8.739

4.  RGS4 promotes allergen- and aspirin-associated airway hyperresponsiveness by inhibiting PGE2 biosynthesis.

Authors:  Gordon S Wong; Jamie L Redes; Nariman Balenga; Morgan McCullough; Nathalie Fuentes; Ameya Gokhale; Cynthia Koziol-White; Joseph A Jude; Laura A Madigan; Eunice C Chan; William H Jester; Sabrina Biardel; Nicolas Flamand; Reynold A Panettieri; Kirk M Druey
Journal:  J Allergy Clin Immunol       Date:  2020-03-19       Impact factor: 10.793

5.  Role of mast cells and protease-activated receptor-2 in cyclooxygenase-2 expression in urothelial cells.

Authors:  Zun-Yi Wang; Peiqing Wang; Dale E Bjorling
Journal:  Am J Physiol Regul Integr Comp Physiol       Date:  2009-08-12       Impact factor: 3.619

6.  Alteration in Uterine Protease-Activated Receptor 2 Expression in Preterm Birth Induced Experimentally in Brp-39 Null Mutant Mice.

Authors:  Ja Yun Jang; Yi Seul Kim; Yu Mi Han; So Young Kang; Jung-Sun Kim
Journal:  Reprod Sci       Date:  2018-07-11       Impact factor: 3.060

7.  Role of protease-activated receptor-2 on cell death and DNA fragmentation in Helicobacter pylori-infected gastric epithelial cells.

Authors:  Joo Weon Lim; Hyeyoung Kim
Journal:  J Transl Med       Date:  2010-09-16       Impact factor: 5.531

8.  Effect of Protease-Activated Receptor-2-Activating Peptide on Guinea Pig Airway Resistance and Isolated Tracheal Strips.

Authors:  Magda M Hagras; Fatemah O Kamel
Journal:  J Microsc Ultrastruct       Date:  2019-09-24
  8 in total

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