|
|
||||||||
Departments of Surgery and Physiology, University of California, San Francisco, California
Ossovskaya, Valeria S., and Nigel W. Bunnett. Protease-Activated Receptors: Contribution to Physiology and Disease. Physiol Rev 84: 579621, 2004; 10.1152/physrev.00028.2003.Proteases acting at the surface of cells generate and destroy receptor agonists and activate and inactivate receptors, thereby making a vitally important contribution to signal transduction. Certain serine proteases that derive from the circulation (e.g., coagulation factors), inflammatory cells (e.g., mast cell and neutrophil proteases), and from multiple other sources (e.g., epithelial cells, neurons, bacteria, fungi) can cleave protease-activated receptors (PARs), a family of four G protein-coupled receptors. Cleavage within the extracellular amino terminus exposes a tethered ligand domain, which binds to and activates the receptors to initiate multiple signaling cascades. Despite this irreversible mechanism of activation, signaling by PARs is efficiently terminated by receptor desensitization (receptor phosphorylation and uncoupling from G proteins) and downregulation (receptor degradation by cell-surface and lysosomal proteases). Protease signaling in tissues depends on the generation and release of proteases, availability of cofactors, presence of protease inhibitors, and activation and inactivation of PARs. Many proteases that activate PARs are produced during tissue damage, and PARs make important contributions to tissue responses to injury, including hemostasis, repair, cell survival, inflammation, and pain. Drugs that mimic or interfere with these processes are attractive therapies: selective agonists of PARs may facilitatehealing, repair, and protection, whereas protease inhibitors and PAR antagonists can impede exacerbated inflammation and pain. Major future challenges will be to understand the role of proteases and PARs in physiological control mechanisms and human diseases and to develop selective agonists and antagonists that can be used to probe function and treat disease.
This article has been cited by other articles:
![]() |
F. Nurozler, T. Kutlu, and G. Kucuk Aprotinin for Patients Exposed to Clopidogrel Before Off-Pump Coronary Bypass Asian Cardiovasc Thorac Ann, December 1, 2008; 16(6): 483 - 487. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. S. Blackburn and C. E. Brinckerhoff Matrix Metalloproteinase-1 and Thrombin Differentially Activate Gene Expression in Endothelial Cells via PAR-1 and Promote Angiogenesis Am. J. Pathol., December 1, 2008; 173(6): 1736 - 1746. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. H. Hong, J. Y. Hong, B. Park, S.-I. Lee, J. T. Seo, K.-E. Kim, M. H. Sohn, and D. M. Shin Chitinase Activates Protease-Activated Receptor-2 in Human Airway Epithelial Cells Am. J. Respir. Cell Mol. Biol., November 1, 2008; 39(5): 530 - 535. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. Morla, G. Crambert, D. Mordasini, G. Favre, A. Doucet, and M. Imbert-Teboul Proteinase-activated Receptor 2 Stimulates Na,K-ATPase and Sodium Reabsorption in Native Kidney Epithelium J. Biol. Chem., October 17, 2008; 283(42): 28020 - 28028. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. C. Chin, W. Y. Lee, A. Nusrat, N. Vergnolle, and C. A. Parkos Neutrophil-mediated Activation of Epithelial Protease-Activated Receptors-1 and -2 Regulates Barrier Function and Transepithelial Migration J. Immunol., October 15, 2008; 181(8): 5702 - 5710. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. Rallabhandi, Q. M. Nhu, V. Y. Toshchakov, W. Piao, A. E. Medvedev, M. D. Hollenberg, A. Fasano, and S. N. Vogel Analysis of Proteinase-activated Receptor 2 and TLR4 Signal Transduction: A NOVEL PARADIGM FOR RECEPTOR COOPERATIVITY J. Biol. Chem., September 5, 2008; 283(36): 24314 - 24325. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. Barbara and C. Cremon Serine proteases: new players in diarrhoea-predominant irritable bowel syndrome Gut, August 1, 2008; 57(8): 1035 - 1037. [Full Text] [PDF] |
||||
![]() |
M. D. Hollenberg, B. Renaux, E. Hyun, S. Houle, N. Vergnolle, M. Saifeddine, and R. Ramachandran Derivatized 2-Furoyl-LIGRLO-amide, a Versatile and Selective Probe for Proteinase-Activated Receptor 2: Binding and Visualization J. Pharmacol. Exp. Ther., August 1, 2008; 326(2): 453 - 462. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. M. Laukkarinen, E. R. Weiss, G. J. D. van Acker, M. L. Steer, and G. Perides Protease-activated Receptor-2 Exerts Contrasting Model-specific Effects on Acute Experimental Pancreatitis J. Biol. Chem., July 25, 2008; 283(30): 20703 - 20712. [Abstract] [Full Text] [PDF] |
||||
![]() |
M.-H. Kim, B.-H. Choi, S.-R. Jung, T. J. Sernka, S. Kim, K.-T. Kim, B. Hille, T. D. Nguyen, and D.-S. Koh Protease-activated Receptor-2 Increases Exocytosis via Multiple Signal Transduction Pathways in Pancreatic Duct Epithelial Cells J. Biol. Chem., July 4, 2008; 283(27): 18711 - 18720. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. J. Mize, W. Wang, and T. K. Takayama Prostate-Specific Kallikreins-2 and -4 Enhance the Proliferation of DU-145 Prostate Cancer Cells through Protease-Activated Receptors-1 and -2 Mol. Cancer Res., June 1, 2008; 6(6): 1043 - 1051. [Abstract] [Full Text] [PDF] |
||||
![]() |
V. Shpacovitch, M. Feld, M. D. Hollenberg, T. A. Luger, and M. Steinhoff Role of protease-activated receptors in inflammatory responses, innate and adaptive immunity J. Leukoc. Biol., June 1, 2008; 83(6): 1309 - 1322. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Feld, V. M. Shpacovitch, C. Ehrhardt, C. Kerkhoff, M. D. Hollenberg, N. Vergnolle, S. Ludwig, and M. Steinhoff Agonists of Proteinase-Activated Receptor-2 Enhance IFN-{gamma}-Inducible Effects on Human Monocytes: Role in Influenza A Infection J. Immunol., May 15, 2008; 180(10): 6903 - 6910. [Abstract] [Full Text] [PDF] |
||||
![]() |
I. J. Guthmundsdottir, N. N. Lang, N. A. Boon, C. A. Ludlam, D. J. Webb, K. A. Fox, and D. E. Newby Role of the endothelium in the vascular effects of the thrombin receptor (protease-activated receptor type 1) in humans. J. Am. Coll. Cardiol., May 6, 2008; 51(18): 1749 - 1756. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. J. Ramsay, Y. Dong, M. L. Hunt, M. Linn, H. Samaratunga, J. A. Clements, and J. D. Hooper Kallikrein-related Peptidase 4 (KLK4) Initiates Intracellular Signaling via Protease-activated Receptors (PARs): KLK4 AND PAR-2 ARE CO-EXPRESSED DURING PROSTATE CANCER PROGRESSION J. Biol. Chem., May 2, 2008; 283(18): 12293 - 12304. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. S. Mullan, M. Riley, D. Clarke, A. Tatler, A. Sutcliffe, A. J. Knox, and L. Pang {beta}-Tryptase Regulates IL-8 Expression in Airway Smooth Muscle Cells by a PAR-2-Independent Mechanism Am. J. Respir. Cell Mol. Biol., May 1, 2008; 38(5): 600 - 608. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. E. B. Sipe, S. M. Brierley, C. M. Martin, B. D. Phillis, F. B. Cruz, E. F. Grady, W. Liedtke, D. M. Cohen, S. Vanner, L. A. Blackshaw, et al. Transient receptor potential vanilloid 4 mediates protease activated receptor 2-induced sensitization of colonic afferent nerves and visceral hyperalgesia Am J Physiol Gastrointest Liver Physiol, May 1, 2008; 294(5): G1288 - G1298. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. L. Schmidt, T. R. Trejo, T. B. Plummer, J. L. Platt, and A. H. Tang Infection-induced proteolysis of PGRP-LC controls the IMD activation and melanization cascades in Drosophila FASEB J, March 1, 2008; 22(3): 918 - 929. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Schouten, W. J. Wiersinga, M. Levi, and T. van der Poll Inflammation, endothelium, and coagulation in sepsis J. Leukoc. Biol., March 1, 2008; 83(3): 536 - 545. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. L. Strande, A. Hsu, J. Su, X. Fu, G. J. Gross, and J. E. Baker Inhibiting Protease-Activated Receptor 4 Limits Myocardial Ischemia/Reperfusion Injury in Rat Hearts by Unmasking Adenosine Signaling J. Pharmacol. Exp. Ther., March 1, 2008; 324(3): 1045 - 1054. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Q. van der Merwe, M. D. Hollenberg, and W. K. MacNaughton EGF receptor transactivation and MAP kinase mediate proteinase-activated receptor-2-induced chloride secretion in intestinal epithelial cells Am J Physiol Gastrointest Liver Physiol, February 1, 2008; 294(2): G441 - G451. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Borensztajn, J. Stiekema, S. Nijmeijer, P. H. Reitsma, M. P. Peppelenbosch, and C. A. Spek Factor Xa Stimulates Proinflammatory and Profibrotic Responses in Fibroblasts via Protease-Activated Receptor-2 Activation Am. J. Pathol., February 1, 2008; 172(2): 309 - 320. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Saifeddine, M. L. Seymour, Y.-P. Xiao, S. J. Compton, S. Houle, R. Ramachandran, W. K. MacNaughton, S. Simonet, C. Vayssettes-Courchay, T. J. Verbeuren, et al. Proteinase-activated receptor-2 activating peptides: distinct canine coronary artery receptor systems Am J Physiol Heart Circ Physiol, December 1, 2007; 293(6): H3279 - H3289. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. A. Komarova, D. Mehta, and A. B. Malik Dual Regulation of Endothelial Junctional Permeability Sci. Signal., November 13, 2007; 2007(412): re8 - re8. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. A. Vesey, W. A. Kruger, P. Poronnik, G. C. Gobe, and D. W. Johnson Proinflammatory and proliferative responses of human proximal tubule cells to PAR-2 activation Am J Physiol Renal Physiol, November 1, 2007; 293(5): F1441 - F1449. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Jiang, A. Zatta, H. Kin, N. Wang, J. G. Reeves, J. Mykytenko, J. Deneve, Z.-Q. Zhao, R. A. Guyton, and J. Vinten-Johansen PAR-2 activation at the time of reperfusion salvages myocardium via an ERK1/2 pathway in in vivo rat hearts Am J Physiol Heart Circ Physiol, November 1, 2007; 293(5): H2845 - H2852. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. H. Slofstra, M. F. Bijlsma, A. P. Groot, P. H. Reitsma, T. Lindhout, H. ten Cate, and C. A. Spek Protease-activated receptor-4 inhibition protects from multiorgan failure in a murine model of systemic inflammation Blood, November 1, 2007; 110(9): 3176 - 3182. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Afkhami-Goli, F. Noorbakhsh, A. J. Keller, N. Vergnolle, D. Westaway, J. H. Jhamandas, P. Andrade-Gordon, M. D. Hollenberg, H. Arab, R. H. Dyck, et al. Proteinase-Activated Receptor-2 Exerts Protective and Pathogenic Cell Type-Specific Effects in Alzheimer's Disease J. Immunol., October 15, 2007; 179(8): 5493 - 5503. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. Hasdemir, N. W. Bunnett, and G. S. Cottrell Hepatocyte Growth Factor-regulated Tyrosine Kinase Substrate (HRS) Mediates Post-endocytic Trafficking of Protease-activated Receptor 2 and Calcitonin Receptor-like Receptor J. Biol. Chem., October 5, 2007; 282(40): 29646 - 29657. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. Knecht, G. S. Cottrell, S. Amadesi, J. Mohlin, A. Skaregarde, K. Gedda, A. Peterson, K. Chapman, M. D. Hollenberg, N. Vergnolle, et al. Trypsin IV or Mesotrypsin and p23 Cleave Protease-activated Receptors 1 and 2 to Induce Inflammation and Hyperalgesia J. Biol. Chem., September 7, 2007; 282(36): 26089 - 26100. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. Moussa, J. Apostolopoulos, P. Davenport, J. Tchongue, and P. G. Tipping Protease-Activated Receptor-2 Augments Experimental Crescentic Glomerulonephritis Am. J. Pathol., September 1, 2007; 171(3): 800 - 808. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. A. Giacaman, A. H. Nobbs, K. F. Ross, and M. C. Herzberg Porphyromonas gingivalis Selectively Up-Regulates the HIV-1 Coreceptor CCR5 in Oral Keratinocytes J. Immunol., August 15, 2007; 179(4): 2542 - 2550. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. M. Tuder and I. Petrache Molecular Multitasking in the Airspace: {alpha}1-Antitrypsin Takes on Thrombin and Plasmin Am. J. Respir. Cell Mol. Biol., August 1, 2007; 37(2): 130 - 134. [Full Text] [PDF] |
||||
![]() |
J. G. Kirkland, G. S. Cottrell, N. W. Bunnett, and C. U. Corvera Agonists of protease-activated receptors 1 and 2 stimulate electrolyte secretion from mouse gallbladder Am J Physiol Gastrointest Liver Physiol, July 1, 2007; 293(1): G335 - G346. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Bushell The emergence of proteinase-activated receptor-2 as a novel target for the treatment of inflammation-related CNS disorders J. Physiol., May 15, 2007; 581(1): 7 - 16. [Abstract] [Full Text] [PDF] |
||||
![]() |
O. Malbec, K. Roget, C. Schiffer, B. Iannascoli, A. R. Dumas, M. Arock, and M. Daeron Peritoneal Cell-Derived Mast Cells: An In Vitro Model of Mature Serosal-Type Mouse Mast Cells J. Immunol., May 15, 2007; 178(10): 6465 - 6475. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. Voss, J. N. McLaughlin, M. Holinstat, R. Zent, and H. E. Hamm PAR1, but Not PAR4, Activates Human Platelets through a Gi/o/Phosphoinositide-3 Kinase Signaling Axis Mol. Pharmacol., May 1, 2007; 71(5): 1399 - 1406. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Holinstat, B. Voss, M. L. Bilodeau, and H. E. Hamm Protease-Activated Receptors Differentially Regulate Human Platelet Activation through a Phosphatidic Acid-Dependent Pathway Mol. Pharmacol., March 1, 2007; 71(3): 686 - 694. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. D. Grant, G. S. Cottrell, S. Amadesi, M. Trevisani, P. Nicoletti, S. Materazzi, C. Altier, N. Cenac, G. W. Zamponi, F. Bautista-Cruz, et al. Protease-activated receptor 2 sensitizes the transient receptor potential vanilloid 4 ion channel to cause mechanical hyperalgesia in mice J. Physiol., February 1, 2007; 578(3): 715 - 733. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Surprenant Pain TRP-ed up by PARs J. Physiol., February 1, 2007; 578(3): 631 - 631. [Full Text] [PDF] |
||||
![]() |
K. Shinagawa, J. A. Martin, V. A. Ploplis, and F. J. Castellino Coagulation Factor Xa Modulates Airway Remodeling in a Murine Model of Asthma Am. J. Respir. Crit. Care Med., January 15, 2007; 175(2): 136 - 143. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Ayala, D. J. Warejcka, M. Olague-Marchan, and S. S. Twining Corneal Activation of Prothrombin to Form Thrombin, Independent of Vascular Injury Invest. Ophthalmol. Vis. Sci., January 1, 2007; 48(1): 134 - 143. [Abstract] [Full Text] [PDF] |
||||
![]() |
Y. Kida, H. Inoue, T. Shimizu, and K. Kuwano Serratia marcescens Serralysin Induces Inflammatory Responses through Protease-Activated Receptor 2 Infect. Immun., January 1, 2007; 75(1): 164 - 174. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Hirano The Roles of Proteinase-Activated Receptors in the Vascular Physiology and Pathophysiology Arterioscler. Thromb. Vasc. Biol., January 1, 2007; 27(1): 27 - 36. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Oikonomopoulou, K. K. Hansen, M. Saifeddine, I. Tea, M. Blaber, S. I. Blaber, I. Scarisbrick, P. Andrade-Gordon, G. S. Cottrell, N. W. Bunnett, et al. Proteinase-activated Receptors, Targets for Kallikrein Signaling J. Biol. Chem., October 27, 2006; 281(43): 32095 - 32112. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Roosterman, T. Goerge, S. W. Schneider, N. W. Bunnett, and M. Steinhoff Neuronal control of skin function: the skin as a neuroimmunoendocrine organ. Physiol Rev, October 1, 2006; 86(4): 1309 - 1379. [Abstract] [Full Text] [PDF] |
||||
![]() |
W. Li, T. Nakagawa, N. Koyama, X. Wang, J. Jin, Y. Mizuno-Horikawa, J. Gu, E. Miyoshi, I. Kato, K. Honke, et al. Down-regulation of trypsinogen expression is associated with growth retardation in {alpha}1,6-fucosyltransferase-deficient mice: attenuation of proteinase-activated receptor 2 activity Glycobiology, October 1, 2006; 16(10): 1007 - 1019. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Ahamed, H. H. Versteeg, M. Kerver, V. M. Chen, B. M. Mueller, P. J. Hogg, and W. Ruf Disulfide isomerization switches tissue factor from coagulation to cell signaling PNAS, September 19, 2006; 103(38): 13932 - 13937. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Holinstat, B. Voss, M. L. Bilodeau, J. N. McLaughlin, J. Cleator, and H. E. Hamm PAR4, but Not PAR1, Signals Human Platelet Aggregation via Ca2+ Mobilization and Synergistic P2Y12 Receptor Activation J. Biol. Chem., September 8, 2006; 281(36): 26665 - 26674. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. J. Leger, L. Covic, and A. Kuliopulos Protease-Activated Receptors in Cardiovascular Diseases Circulation, September 5, 2006; 114(10): 1070 - 1077. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Amadesi, G. S. Cottrell, L. Divino, K. Chapman, E. F. Grady, F. Bautista, R. Karanjia, C. Barajas-Lopez, S. Vanner, N. Vergnolle, et al. Protease-activated receptor 2 sensitizes TRPV1 by protein kinase C{varepsilon}- and A-dependent mechanisms in rats and mice J. Physiol., September 1, 2006; 575(2): 555 - 571. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. N. Dhanasekaran Transducing the Signals: A G Protein Takes a New Identity Sci. Signal., August 8, 2006; 2006(347): pe31 - pe31. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. Gatti, E. Andre, S. Amadesi, T. Q. Dinh, A. Fischer, N. W. Bunnett, S. Harrison, P. Geppetti, and M. Trevisani Protease-activated receptor-2 activation exaggerates TRPV1-mediated cough in guinea pigs J Appl Physiol, August 1, 2006; 101(2): 506 - 511. [Abstract] [Full Text] [PDF] |
||||
![]() |
T. Goerge, A. Barg, E.-M. Schnaeker, B. Poppelmann, V. Shpacovitch, A. Rattenholl, C. Maaser, T. A. Luger, M. Steinhoff, and S. W. Schneider Tumor-derived matrix metalloproteinase-1 targets endothelial proteinase-activated receptor 1 promoting endothelial cell activation. Cancer Res., August 1, 2006; 66(15): 7766 - 7774. [Abstract] [Full Text] [PDF] |
||||
![]() |
Q. Gu and L.-Y. Lee Hypersensitivity of pulmonary chemosensitive neurons induced by activation of protease-activated receptor-2 in rats J. Physiol., August 1, 2006; 574(3): 867 - 876. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. Zania, S. Kritikou, C. S. Flordellis, M. E. Maragoudakis, and N. E. Tsopanoglou Blockade of Angiogenesis by Small Molecule Antagonists to Protease-Activated Receptor-1: Association with Endothelial Cell Growth Suppression and Induction of Apoptosis J. Pharmacol. Exp. Ther., July 1, 2006; 318(1): 246 - 254. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. Cattaruzza, N. Cenac, E. Barocelli, M. Impicciatore, E. Hyun, N. Vergnolle, and C. Sternini Protective Effect of Proteinase-Activated Receptor 2 Activation on Motility Impairment and Tissue Damage Induced by Intestinal Ischemia/Reperfusion in Rodents Am. J. Pathol., July 1, 2006; 169(1): 177 - 188. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. Riteau, C. de Vaureix, and F. Lefevre Trypsin increases pseudorabies virus production through activation of the ERK signalling pathway. J. Gen. Virol., May 1, 2006; 87(Pt 5): 1109 - 1112. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Chignard and D. Pidard Neutrophil and Pathogen Proteinases versus Proteinase-Activated Receptor-2 Lung Epithelial Cells: More Terminators than Activators. Am. J. Respir. Cell Mol. Biol., April 1, 2006; 34(4): 394 - 398. [Abstract] [Full Text] [PDF] |
||||
|
|