Isolation and Biochemical Characterization of a New Thrombin-Like Serine Protease fromBothrops pirajaiSnake Venom
Author(s) -
Kayena Delaix Zaqueo,
Anderson M. Kayano,
Rodrigo SimõesSilva,
Leandro S. Moreira-Dill,
Carla Freire Celedônio Fernandes,
André Lopes Fuly,
Vinícius Gonçalves Maltarollo,
Káthia M. Honório,
Saulo L. da Silva,
Gerardo Acosta,
María Antonia Odena,
Eliandre de Oliveira,
Fernando Alberício,
Leonardo A. Calderón,
Andreimar M. Soares,
Rodrigo G. Stábeli
Publication year - 2014
Publication title -
biomed research international
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.772
H-Index - 126
eISSN - 2314-6141
pISSN - 2314-6133
DOI - 10.1155/2014/595186
Subject(s) - snake venom , serine protease , venom , isolation (microbiology) , bothrops , serine , biology , thrombin , microbiology and biotechnology , proteases , protease , biochemistry , chemistry , enzyme , immunology , platelet
This paper presents a novel serine protease (SP) isolated from Bothrops pirajai , a venomous snake found solely in Brazil that belongs to the Viperidae family. The identified SP, named BpirSP-39, was isolated by three chromatographic steps (size exclusion, bioaffinity, and reverse phase chromatographies). The molecular mass of BpirSP-39 was estimated by SDS-PAGE and confirmed by mass spectrometry (39,408.32 Da). The protein was able to form fibrin networks, which was not observed in the presence of serine protease inhibitors, such as phenylmethylsulfonyl fluoride (PMSF). Furthermore, BpirSP-39 presented considerable thermal stability and was apparently able to activate factor XIII of the blood coagulation cascade, unlike most serine proteases. BpirSP-39 was capable of hydrolyzing different chromogenic substrates tested (S-2222, S-2302, and S-2238) while Cu 2+ significantly diminished BspirSP-39 activity on the three tested substrates. The enzyme promoted platelet aggregation and also exhibited fibrinogenolytic, fibrinolytic, gelatinolytic, and amidolytic activities. The multiple alignment showed high sequence similarity to other thrombin-like enzymes from snake venoms. These results allow us to conclude that a new SP was isolated from Bothrops pirajai snake venom.
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