Purification, biochemical, and structural characterization of a novel fibrinolytic enzyme from Mucor subtilissimus UCP 1262

被引:0
作者
Thiago Pajeú Nascimento
Amanda Emmanuelle Sales
Tatiana Souza Porto
Romero Marcos Pedrosa Brandão Costa
Leonid Breydo
Vladimir N. Uversky
Ana Lúcia Figueiredo Porto
Attilio Converti
机构
[1] Federal University of Pernambuco,Laboratory of Immunopathology Keizo Asami (LIKA)
[2] Federal Rural University of Pernambuco,Department of Morphology and Animal Physiology
[3] University of South Florida,Department of Molecular Medicine and Byrd Alzheimer’s Institute, Morsani College of Medicine
[4] Federal Rural University of Pernambuco,Academic Unit of Garanhuns
[5] Russian Academy of Sciences,Laboratory of New Methods in Biology, Institute for Biological Instrumentation
[6] Russian Academy of Sciences,Laboratory of Structural Dynamics, Stability and Folding of Proteins, Institute of Cytology
[7] University of Genoa,Department of Civil, Chemical and Environmental Engineering, Pole of Chemical Engineering
来源
Bioprocess and Biosystems Engineering | 2017年 / 40卷
关键词
Fibrinolytic enzyme; Enzyme activity; Circular dichroism; Polyethylene glycol;
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中图分类号
学科分类号
摘要
Fibrinolytic proteases are enzymes that degrade fibrin. They provide a promising alternative to existing drugs for thrombolytic therapy. A protease isolated from the filamentous fungus Mucor subtilissimus UCP 1262 was purified in three steps by ammonium sulfate fractionation, ion exchange, and molecular exclusion chromatographies, and characterized biochemically and structurally. The purified protease exhibited a molecular mass of 20 kDa, an apparent isoelectric point of 4.94 and a secondary structure composed mainly of α-helices. Selectivity for N-succinyl-Ala–Ala–Pro–Phe-p-nitroanilide as substrate suggests that this enzyme is a chymotrypsin-like serine protease, whose activity was enhanced by the addition of Cu2+, Mg2+, and Fe2+. The enzyme showed a fibrinolytic activity of 22.53 U/mL at 40 °C and its contact with polyethylene glycol did not lead to any significant alteration of its secondary structure. This protein represents an important example of a novel fibrinolytic enzyme with potential use in the treatment of thromboembolic disorders such as strokes, pulmonary emboli, and deep vein thrombosis.
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页码:1209 / 1219
页数:10
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