Literature DB >> 11432747

Factor VII and single-chain plasminogen activator-activating protease: activation and autoactivation of the proenzyme.

C Kannemeier1, A Feussner, H A Stöhr, J Weisse, K T Preissner, J Römisch.   

Abstract

Structural and biological characteristics of a recently described plasma serine protease, which displayed factor VII as well as pro-urokinase-activating properties in vitro, indicated a dual role for this factor VII-activating protease (FSAP) in hemostasis. Only the active protease (two-chain FSAP) has been isolated from plasma and from a prothrombin complex concentrate, whereas activators of the proenzyme have not been identified so far. After purification of the FSAP proenzyme from cryo-poor plasma by adsorption to an immobilized mAb and subsequent ion-exchange chromatography, activation to generate two-chain FSAP was followed by a direct chromogenic assay as well as by the ability of two-chain FSAP to activate pro-urokinase. Purified single-chain FSAP underwent autoactivation leading to the typical protease two-chain pattern and subsequent degradation products, as demonstrated by Western-blotting analysis using a site-specific mAb. This autoactivation was significantly enhanced in the presence of heparin, whereas Ca2+ ions stabilized single-chain FSAP (the proenzyme) resulting in slower autoactivation kinetics. Correspondingly, the heparin-augmented reaction, which was associated with autodegradation particularly of the protease domain, was slowed down by co-incubation with Ca2+. Of the other proteases and cofactors tested, only urokinase (uPA) was able to generate the typical two-chain FSAP pattern. Studies with different forms of uPA suggest that the catalytic activity of pro-urokinase/uPA is needed to activate single-chain FSAP, indicating that it is the only hemostatic protease that can act as a physiological activator of FSAP.

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Year:  2001        PMID: 11432747     DOI: 10.1046/j.1432-1327.2001.02285.x

Source DB:  PubMed          Journal:  Eur J Biochem        ISSN: 0014-2956


  18 in total

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Review 3.  Role of hyaluronan and hyaluronan-binding proteins in lung pathobiology.

Authors:  Frances E Lennon; Patrick A Singleton
Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2011-05-13       Impact factor: 5.464

4.  Role of glycine 221 in catalytic activity of hyaluronan-binding protein 2.

Authors:  Fabian Stavenuiter; Eduard H T M Ebberink; Koen Mertens; Alexander B Meijer
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5.  A positively charged cluster in the epidermal growth factor-like domain of Factor VII-activating protease (FSAP) is essential for polyanion binding.

Authors:  Boran Altincicek; Aya Shibamiya; Heidi Trusheim; Eleni Tzima; Michael Niepmann; Dietmar Linder; Klaus T Preissner; Sandip M Kanse
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6.  Inhibition of PDGF-BB by Factor VII-activating protease (FSAP) is neutralized by protease nexin-1, and the FSAP-inhibitor complexes are internalized via LRP.

Authors:  Lars Muhl; Anders Nykjaer; Malgorzata Wygrecka; Denis Monard; Klaus T Preissner; Sandip M Kanse
Journal:  Biochem J       Date:  2007-06-01       Impact factor: 3.857

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Authors:  Malgorzata Wygrecka; Philipp Markart; Ludger Fink; Andreas Guenther; Klaus T Preissner
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Journal:  J Biol Chem       Date:  2013-01-22       Impact factor: 5.157

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10.  Factor VII activating protease (FSAP) influences vascular remodeling in the mouse hind limb ischemia model.

Authors:  Joerg Herold; Steven Nowak; Sawa Kostin; Jan-Marcus Daniel; Alexander Francke; Saravanan Subramaniam; Ruediger C Braun-Dullaeus; Sandip M Kanse
Journal:  Am J Transl Res       Date:  2017-06-15       Impact factor: 4.060

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