Characterization of Thrombin-Bound Dabigatran Effects on Protease-Activated Receptor-1 Expression and Signaling In Vitro

被引:28
作者
Chen, Buxin [1 ]
Soto, Antonio G. [1 ]
Coronel, Luisa J. [1 ]
Goss, Ashley [2 ]
van Ryn, Joanne [3 ]
Trejo, JoAnn [1 ]
机构
[1] Univ Calif San Diego, Dept Pharmacol, Sch Med, La Jolla, CA 92093 USA
[2] Boehringer Ingelheim Pharmaceut Inc, Dept CardioMetab Dis Res, Ridgefield, CT 06877 USA
[3] Boehringer Ingelheim Pharma GmbH & Co KG, Dept CardioMetab Dis Res, Biberach, Germany
基金
美国国家卫生研究院;
关键词
DOWN-REGULATION; INTERNALIZATION; COAGULATION; ETEXILATE; CLEAVAGE; PHOSPHORYLATION; DIMERIZATION; MODULATION; HIRUDIN; COMPLEX;
D O I
10.1124/mol.114.096446
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Thrombin, the key effector protease of the coagulation cascade, drives fibrin deposition and activates human platelets through protease-activated receptor-1 (PAR1). These processes are critical to the progression of thrombotic diseases. Thrombin is the main target of anticoagulant therapy, and major efforts have led to the discovery of new oral direct inhibitors of thrombin. Dabigatran is the first oral anticoagulant licensed for the prevention of thromboembolisms associated with orthopedic surgery and stroke prevention in atrial fibrillation. Dabigatran is a direct thrombin inhibitor that effectively blocks thrombin's catalytic activity but does not preclude thrombin's exosites and binding to fibrinogen. Thus, we hypothesized that catalytically inactive thrombin retains the capacity to bind to PAR1 through exosite-I and may modulate its function independent of receptor cleavage and activation. Here, we report that dabigatran at clinically relevant concentrations is an effective and acute inhibitor of thrombininduced PAR1 cleavage, activation, internalization, and beta-arrestin recruitment in vitro. Interestingly, prolonged exposure to catalytic inactive thrombin incubated with dabigatran at 20-fold higher therapeutic concentration resulted in increased PAR1 cell-surface expression, which correlated with higher detectable levels of ubiquitinated receptor. These findings are consistent with ubiquitin function as a negative regulator of PAR1 constitutive internalization. Increased PAR1 expression also enhanced agonist-induced phosphoinositide hydrolysis and endothelial barrier permeability. Thus, catalytically inactive thrombin appears to modulate PAR1 function in vitro by stabilizing receptor cell-surface expression; but given the high clearance rate of thrombin, the high concentration of dabigatran required to achieve this effect the in vivo physiologic relevance is unknown.
引用
收藏
页码:95 / 105
页数:11
相关论文
共 38 条
[1]   Lipid raft localization regulates the cleavage specificity of protease activated receptor 1 in endothelial cells [J].
Bae, J. -S. ;
Yang, L. ;
Rezaie, A. R. .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2008, 6 (06) :954-961
[2]   Crystal structures of murine thrombin in complex with the extracellular fragments of murine protease-activated receptors PAR3 and PAR4 [J].
Bah, Alaji ;
Chen, Zhiwei ;
Bush-Pec, Leslie A. ;
Mathews, F. Scott ;
Di Cera, Enrico .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (28) :11603-11608
[3]  
Butenas S, 2002, BIOCHEMISTRY-MOSCOW+, V67, P3
[4]   Allosteric Modulation of Protease-Activated Receptor Signaling [J].
Canto, I. ;
Soh, U. J. K. ;
Trejo, J. .
MINI-REVIEWS IN MEDICINAL CHEMISTRY, 2012, 12 (09) :804-811
[5]   Adaptor Protein Complex-2 (AP-2) and Epsin-1 Mediate Protease-activated Receptor-1 Internalization via Phosphorylation- and Ubiquitination-dependent Sorting Signals [J].
Chen, Buxin ;
Dores, Michael R. ;
Grinnsey, Neil ;
Canto, Isabel ;
Barker, Breann L. ;
Trejo, JoAnn .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2011, 286 (47) :40760-40770
[6]  
CHEN J, 1994, J BIOL CHEM, V269, P16041
[7]   The Long-Term Multicenter Observational Study of Dabigatran Treatment in Patients With Atrial Fibrillation (RELY-ABLE) Study [J].
Connolly, Stuart J. ;
Wallentin, Lars ;
Ezekowitz, Michael D. ;
Eikelboom, John ;
Oldgren, Jonas ;
Reilly, Paul A. ;
Brueckmann, Martina ;
Pogue, Janice ;
Alings, Marco ;
Amerena, John V. ;
Avezum, Alvaro ;
Baumgartner, Iris ;
Budaj, Andrzej J. ;
Chen, Jyh-Hong ;
Dans, Antonio L. ;
Darius, Harald ;
Di Pasquale, Giuseppe ;
Ferreira, Jorge ;
Flaker, Greg C. ;
Flather, Marcus D. ;
Franzosi, Maria Grazia ;
Golitsyn, Sergey P. ;
Halon, David A. ;
Heidbuchel, Hein ;
Hohnloser, Stefan H. ;
Huber, Kurt ;
Jansky, Petr ;
Kamensky, Gabriel ;
Keltai, Matyas ;
Kim, Sung Soon ;
Lau, Chu-Pak ;
Le Heuzey, Jean-Yves ;
Lewis, Basil S. ;
Liu, Lisheng ;
Nanas, John ;
Omar, Razali ;
Pais, Prem ;
Pedersen, Knud E. ;
Piegas, Leopoldo S. ;
Raev, Dimitar ;
Smith, Pal J. ;
Talajic, Mario ;
Tan, Ru San ;
Tanomsup, Supachai ;
Toivonen, Lauri ;
Vinereanu, Dragos ;
Xavier, Denis ;
Zhu, Jun ;
Wang, Susan Q. ;
Duffy, Christine O. .
CIRCULATION, 2013, 128 (03) :237-243
[8]   Protease-activated receptors in hemostasis, thrombosis and vascular biology [J].
Coughlin, SR .
JOURNAL OF THROMBOSIS AND HAEMOSTASIS, 2005, 3 (08) :1800-1814
[9]   THE COAGULATION CASCADE - INITIATION, MAINTENANCE, AND REGULATION [J].
DAVIE, EW ;
FUJIKAWA, K ;
KISIEL, W .
BIOCHEMISTRY, 1991, 30 (43) :10363-10370
[10]   Structural Basis of Thrombin-Protease-Activated Receptor Interactions [J].
Gandhi, Prafull S. ;
Chen, Zhiwei ;
Appelbaum, Eric ;
Zapata, Fatima ;
Di Cera, Enrico .
IUBMB LIFE, 2011, 63 (06) :375-382