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    Academic Journal

    المصدر: Vestnik Moskovskogo universiteta. Seriya 16. Biologiya; Том 75, № 1 (2020); 37-42 ; Вестник Московского университета. Серия 16. Биология; Том 75, № 1 (2020); 37-42 ; 0137-0952

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    Relation: https://vestnik-bio-msu.elpub.ru/jour/article/view/837/505; Kotb E. The biotechnological potential of fibrinolytic enzymes in the dissolution of endogenous blood thrombi // Biotechnol. Prog. 2014. Vol. 30. N 3. P. 656–672.; Kotb E., Helal G.E.-D.A., Edries F.M. Screening for fibrinolytic filamentous fungi and enzymatic properties of the most potent producer, Aspergillus brasiliensis AUMC 9735 // Biologia. 2015. Vol. 70. N 12. P. 1565–1574.; Sharkova T.S., Kurakov A.V., Osmolovskiy A.A., Matveeva E.O., Kreyer V.G., Baranova N.A., Egorov N.S. Screening of producers of proteinases with fibrinolytic and collagenolytic activities among micromycetes // Microbiology. 2015. Vol. 84. N 3. P. 359–364.; Osmolovskiy A.A., Kurakov A.V., Kreyer V.G., Baranova N.A., Egorov N.S. Ability of extracellular proteinases of micromycetes Aspergillus flavipes, Aspergillus fumigatus and Aspergillus sydowii to affect proteins of the human haemostatic system // Moscow Univ. Biol. Sci. Bull. 2017. Vol. 72. N 1. P. 20–24.; Шаркова Т.С., Матвеева Э.О., Кураков А.В., Осмоловский А.А., Крейер В.Г., Баранова Н.А., Егоров Н.С. Энтомопатогенные микромицеты – перспективные продуценты протеиназ с фибринолитической активностью // Усп. мед. микол. 2015. Т. 14. С. 458–460.; Kim H.C., Choi B.-S., Sapkota K., Kim S., Lee H.J., Yoo J.C., Kim S.-J. Purification and characterization of a novel, highly potent fibrinolytic enzyme from Paecilomyces tenuipes // Process Biochem. 2011. Vol. 46. N 8. P. 1545–1553.; Osmolovskiy A.A., Kreyer V.G., Baranova N.A., Egorov N.S. Properties of extracellular plasmin-like proteases of Aspergillus ochraceus micromycete // Applied Biochem. Microbiol. 2017. Vol. 53. N 4. P. 429–434.; Batomunkueva B.P., Egorov N.S. Isolation, purification and resolution of the extracellular proteinase complex of Aspergillus ochraceus 513 with fibrinolytic and anticoagulant activities // Microbiology. 2001. Vol. 70. N 5. P. 519–522.; Osmolovskiy A.A., Rukavitsyna E.D., Kreier V.G., Baranova N.A., Egorov N.S. Production of proteinases with fibrinolytic and fibrinogenolytic activity by a micromycete Aspergillus ochraceus // Microbiology. 2017. Vol. 86. N 4. P. 512–516.; Proteolytic Enzymes. A practical approach / Ed. R. Beynon and J.S. Bond. Oxford: Oxford Univ. Press, 2001. 340 pp.; Егоров Н.С., Ландау Н.С., Буяк Л.И., Крейер В.Г. Гидролитическая система нокардиоформной бактерии Nocardia minima в процессе ее роста, развития и дифференциации // Микробиология. 1991. Т. 60. N 4. С. 637–643.; Osmolovskiy A.A., Popova E.A., Kreyer V.G., Baranova N.A., Egorov N.S. Fibrinolytic and collagenolytic activity of extracellular proteinases of the strains of micromycetes Aspergillus ochraceus L-1 and Aspergillus ustus 1 // Moscow Univ. Biol. Sci. Bull. 2016. Vol. 71. N 1. P. 62–66.; Bradford M.M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding // Anal. Biochem. 1976. Vol. 72. N 1–2. P. 248–254.; Blieva R.K., Safuani Zh.E., Iskakbaeva Zh.A. Effect of various sources of nitrogen and carbon on the biosynthesis of proteolytic enzymes in a culture of Aspergillus awamori 21/96 // Applied Biochem. Microbiol. 2003. Vol. 39. N 2. P. 188–191.; Sharkova T.S., Kornienko E.I., Osmolovskii A.A., Kreier V.G., Baranova N.A., Egorov N.S. Morphological and physiological properties of the micromycete Arthrobotrys longa, a producer of Longolytin, a proteolytic complex with a thrombolytic effect // Microbiology. 2016. Vol. 85. N 2. P. 180–184.; Dias B.A., Neves P.M.O.J., Furlaneto-Maia L., Furlaneto M.C. Cuticle-degrading proteases produced by the entomopathogenic fungus Beauveria bassiana in the presence of coffee berry borer cuticle // Braz. J. Microbiol. 2008. Vol. 39. N 2. P. 301–306.; Umetsu H., Hishinuma K., Wake H., Ichishima E. Production, purification, and properties of serine carboxypeptidase from Paecilomyces carneus // Curr. Microbiol. 1996. Vol. 33. N 1. P. 44–48.; Scorsetti A.C., Elíades L.A., Stenglein S.A., Cabello M.N., Pelizza S.A., Saparrat M.C. Pathogenic and enzyme activities of the entomopathogenic fungus Tolypocladium cylindrosporum (Ascomycota: Hypocreales) from Tierra del Fuego, Argentina // Rev. Biol. Trop. 2012. Vol. 60. N 2. P. 833–841.; Elad Y., Kapat A. The role of Trichoderma harzianum protease in the biocontrol of Botrytis cinerea // Europ. J. Plant Pathol. 1999. Vol. 105. N 2. P. 177–183.; Kotlova E.K., Ivanova N.M., Yusupova M.P., Voyushina T.L., Ivanushkina N.E., Chestukhina G.G. Thiol-dependent serine proteinase from Paecilomyces lilacinus: Purification and catalytic properties // Biochemistry (Mosc.). 2007. Vol. 72. N 1. P. 117–123.; El-Aassar S.A., El-Badry H.M., Abdel-Fattah A.F. The biosynthesis of proteases with fibrinolytic activity in immobilized cultures of Penicillium chrysogenum H9 // Appl. Microbiol. Biotechnol. 1990. Vol. 33. N 1. P. 26–30.; Osmolovskiy A.A., Zvonareva E.S., Kreyer V.G., Baranova N.A., Egorov N.S. Secretion of proteinases with fibrinolytic activity by micromycetes of the genus Aspergillus // Moscow Univ. Biol. Sci. Bull. 2018. Vol. 73. N 1. P. 39–42.; https://vestnik-bio-msu.elpub.ru/jour/article/view/837