A novel fibrinolytic serine metalloprotease from the marine Serratia marcescens subsp. sakuensis: Purification and characterization

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2018

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Elsevier B.V.

Abstract

This study demonstrates the purification and characterization of a fibrinolytic serine metalloprotease from the marine Serratia marcescens subsp. sakuensis (KU296189.1). The purified enzyme (1033 U/mg) had a molecular weight of 43 KDa, with optimum pH and temperature being 7 and 55 °C. The in vitro half-life of the fibrinolytic enzyme at 37 °C was found to be 19 h. The kinetic constants, K<inf>m</inf> and V<inf>max</inf> of the purified enzyme determined using fibrin as substrate was 0.66 mg/mL and 158.73 U/mL. The K<inf>cat</inf> and catalytic efficiency of the enzyme was found to be 12.21 min?1 and 18.32 mL/(mg min) respectively. The fibrinolytic enzyme did not show any proteolytic activity towards blood plasma proteins like haemoglobin, ?-globulins and transferrin. In vitro studies revealed that the fibrinolytic enzyme displayed 38% clot lysis for a period of 3 h which was higher than that displayed by streptokinase and heparin. A total of seven peptide sequences were obtained after the LC-MS/MS-TOF analysis, out of which only four sequences showed 67% homology with the sequences of the other proteases. All these results suggest its novelty and potential application in thrombolytic therapy. © 2018 Elsevier B.V.

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Keywords

fibrin, fibrinolytic serine metalloprotease, hemoglobin, heparin, immunoglobulin, metalloproteinase, plasma protein, plasmin, streptokinase, transferrin, unclassified drug, fibrinolytic agent, serine, serine proteinase, amino acid sequence, Article, blood clot lysis, catalytic efficiency, enzyme analysis, enzyme purification, half life time, human, in vitro study, liquid chromatography-mass spectrometry, matrix assisted laser desorption ionization time of flight mass spectrometry, maximum reaction velocity, molecular weight, nonhuman, pH, protein degradation, Serratia marcescens, Serratia marcescens sakuensis, temperature, turnover number, aquatic species, chemistry, genetics, isolation and purification, kinetics, liquid chromatography, metabolism, tandem mass spectrometry, thrombosis, Amino Acid Sequence, Aquatic Organisms, Chromatography, Liquid, Fibrin, Fibrinolytic Agents, Humans, Hydrogen-Ion Concentration, Kinetics, Metalloproteases, Molecular Weight, Serine, Serine Proteases, Tandem Mass Spectrometry, Thrombosis

Citation

International Journal of Biological Macromolecules, 2018, 112, , pp. 110-118

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