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Citations to this article

Mediation of fibrin-induced release of von Willebrand factor from cultured endothelial cells by the fibrin beta chain.
J A Ribes, … , D D Wagner, C W Francis
J A Ribes, … , D D Wagner, C W Francis
Published August 1, 1989
Citation Information: J Clin Invest. 1989;84(2):435-442. https://doi.org/10.1172/JCI114184.
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Mediation of fibrin-induced release of von Willebrand factor from cultured endothelial cells by the fibrin beta chain.

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Abstract

The exposure of endothelial cells (EC) to fibrin has been shown to stimulate the rapid release of von Willebrand factor (vWf) from storage sites in Weibel-Palade bodies. We have now investigated the fibrin structural features required for stimulation of release. The role of fibrinopeptide cleavage was examined by preparing fibrin with thrombin to remove both fibrinopeptide A (FPA) and fibrinopeptide B (FPB) and with reptilase or Agkistrodon contortrix procoagulant to selectively remove FPA or FPB, respectively. vWf release was found to require FPB cleavage, whereas removal of FPA and Factor XIIIa cross-linking of fibrin were without effect. The dependence of release on FPB cleavage suggested that a site involving the NH2 terminus of the beta chain could mediate vWf secretion. To test this hypothesis, B beta chain derivatives were prepared and examined for their capacity to induce release. Purified B beta chain had no effect on release at a concentration of 20 nM but stimulated release from 26 +/- 6% of cells at 200 nM, the maximum solubility. However, after thrombin cleavage of FPB, release occurred from 36 +/- 9% of cells at 20 nM and from 60 +/- 7% at 200 nM, both significantly greater than before cleavage. FPB and B beta 1-42 showed no activity, whereas beta 15-42, representing the NH2 terminus of the thrombin cleaved beta chain, stimulated significant release at concentrations of 0.1 and 1 mM. We conclude that FPB cleavage from fibrin is required for stimulation of vWf release from EC and that this is mediated by a site that includes the NH2 terminus of the beta chain.

Authors

J A Ribes, F Ni, D D Wagner, C W Francis

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Total citations by year

Year: 2017 2015 2014 2011 2010 2008 2006 2005 2004 2003 2002 2001 2000 1999 1998 1997 1996 1995 1993 1992 1991 1990 Total
Citations: 1 1 1 1 1 1 1 3 1 2 2 2 1 3 1 1 2 1 1 3 1 1 32
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Citations to this article (32)

Title and authors Publication Year
Impact of thrombosis on pulmonary endothelial injury and repair following sepsis
CE Evans, YY Zhao
American journal of physiology. Lung cellular and molecular physiology 2017
Endothelial cell control of thrombosis
JW Yau, H Teoh, S Verma
BMC Cardiovascular Disorders 2015
Thrombin-dependent Incorporation of von Willebrand Factor into a Fibrin Network
A Miszta, L Pelkmans, T Lindhout, G Krishnamoorthy, PG de Groot, CH Hemker, JW Heemskerk, H Kelchtermans, B Laat
The Journal of biological chemistry 2014
Endothelium—role in regulation of coagulation and inflammation
VW van Hinsbergh
Seminars in Immunopathology 2011
Mast cell activation by fibrinogen-related homologous c-terminal peptides (haptides) modulates systemic blood pressure
M Basheer, H Schwalb, M Nesher, D Gilon, I Shefler, YA Mekori, OM Shapira, R Gorodetsky
Journal of Allergy and Clinical Immunology 2010
Recent Advances in Thrombosis and Hemostasis 2008
K Tanaka, EW Davie, Y Ikeda, S Iwanaga, H Saito, K Sueishi
2008
Fibrin(ogen) and its fragments in the pathophysiology and treatment of myocardial infarction
K Zacharowski, P Zacharowski, S Reingruber, P Petzelbauer
Journal of Molecular Medicine 2006
Fibrinogen and fibrin structure and functions
MW Mosesson
Journal of Thrombosis and Haemostasis 2005
The fibrin-derived peptide Bbeta15-42 protects the myocardium against ischemia-reperfusion injury
P Petzelbauer, PA Zacharowski, Y Miyazaki, P Friedl, G Wickenhauser, FJ Castellino, M Gröger, K Wolff, K Zacharowski
Nature Medicine 2005
Biochemical and Enzymatic Characterization of Human Kallikrein 5 (hK5), a Novel Serine Protease Potentially Involved in Cancer Progression
IP Michael, G Sotiropoulou, G Pampalakis, A Magklara, M Ghosh, G Wasney, EP Diamandis
The Journal of biological chemistry 2005
Interleukin-1β but not IL-1α binds to fibrinogen and fibrin and has enhanced activity in the bound form
A Sahni, M Guo, SK Sahni, CW Francis
Blood 2004
Matrix-fibrinogen enhances wound closure by increasing both cell proliferation and migration
BJ Rybarczyk, SO Lawrence, PJ Simpson-Haidaris
Blood 2003
Plasmic degradation modulates activity of fibrinogen-bound fibroblast growth factor-2
A Sahni, CW Francis
Journal of Thrombosis and Haemostasis 2003
Fibrin precursors, intermediaries for hemostasis in the clot war
JR Shainoff, PM DiBello
Thrombosis Research 2002
Interactions of Intercellular Adhesion Molecule-1 with Fibrinogen
NL Tsakadze, Z Zhao, SE D'Souza
Trends in Cardiovascular Medicine 2002
Japanese Journal of Thrombosis and Hemostasis
M OKUDAIRA, H ASAKURA, Y SANO, Y SUGA, M YAMAZAKI, K AOSHIMA, E MORISHITA, M SAITO, Y ONTACHI, T MIZUTANI, M KATO, T ITO, K MIYAMOTO, S NAKAO
Japanese Journal of Thrombosis and Hemostasis 2001
The Structure and Biological Features of Fibrinogen and Fibrin
MW Mosesson, KR Siebenlist, DA Meh
Annals of the New York Academy of Sciences 2001
Regulation by Fibrinogen and Its Products of Intercellular Adhesion Molecule-1 Expression in Human Saphenous Vein Endothelial Cells
SL Harley, J Sturge, JT Powell
Arteriosclerosis, thrombosis, and vascular biology 2000
FUNDAMENTALS OF NORMAL HEMOSTASIS
GP Iskander, EY Cheng
Anesthesiology Clinics of North America 1999
Potentiation of endothelial cell proliferation by fibrin(ogen)-bound fibroblast growth factor-2
A Sahni, LA Sporn, CW Francis
The Journal of biological chemistry 1999
In Vivo Regulation of von Willebrand Factor Synthesis: von Willebrand Factor Production in Endothelial Cells After Lung Transplantation Between Normal Pigs and von Willebrand Factor–Deficient Pigs
JP Brouland, T Egan, J Roussi, M Bonneau, G Pignaud, C Bal, M Vaiman, P André, P Hervé, GM Mazmanian, L Drouet
Arteriosclerosis, thrombosis, and vascular biology 1999
Endothelial Cell VE-cadherin Functions as a Receptor for the β15–42 Sequence of Fibrin
TL Bach, C Barsigian, CH Yaen, J Martinez
The Journal of biological chemistry 1998
Activation of Endothelial Cells in Thrombosis and Vasculitis
P Cockwell, WY Tse, CO Savage
Scandinavian Journal of Rheumatology 1997
von Willebrand disease: Pathogenesis, classification, and management
EW Murray, D Lillicrap
Transfusion Medicine Reviews 1996
Heparin-Binding Domain of Fibrin Mediates Its Binding to Endothelial Cells
TM Odrljin, CW Francis, LA Sporn, LA Bunce, VJ Marder, PJ Simpson-Haidaris
Arteriosclerosis, thrombosis, and vascular biology 1996
Peptido-Leukotrienes Are Potent Agonists of von Willebrand Factor Secretion and P-Selectin Surface Expression in Human Umbilical Vein Endothelial Cells
YH Datta, M Romano, BC Jacobson, DE Golan, CN Serhan, BM Ewenstein
Circulation 1995
The role of the 5'-flanking region in the cell-specific transcription of the human von Willebrand factor gene
V Ferreira, Z Assouline, JL Schwachtgen, BR Bahnak, D Meyer, D Kerbiriou-Nabias
Biochemical Journal 1993
Endothelial cell spreading on fibrin requires fibrinopeptide B cleavage and amino acid residues 15-42 of the beta chain
LA Bunce, LA Sporn, CW Francis
Journal of Clinical Investigation 1992
Distinct biological consequences of integrin alpha v beta 3-mediated melanoma cell adhesion to fibrinogen and its plasmic fragments
B Felding-Habermann, ZM Ruggeri, DA Cheresh
The Journal of biological chemistry 1992
A 130-kDa protein on endothelial cells binds to amino acids 15-42 of the B beta chain of fibrinogen
JK Erban, DD Wagner
The Journal of biological chemistry 1992
Cell-Cell Interactions in the Release of Inflammatory Mediators
PY Wong, CN Serhan
1991
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A Bikfalvi
1990

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