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Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity

The present study aimed to evaluate the proteolytic and biological activities of a new metalloproteinase from B. moojeni venom. The purification of BmooMPα-II was carried out through two chromatographic steps (ion-exchange and affinity). BmooMPα-II is a monomeric protein with an apparent molecular m...

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Autores principales: de Queiroz, Mayara R., Mamede, Carla C. Neves, Fonseca, Kelly C., de Morais, Nadia C. G., de Sousa, Bruna B., Santos-Filho, Norival A., Beletti, Marcelo E., Arantes, Eliane C., Stanziola, Leonilda, de Oliveira, Fábio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058653/
https://www.ncbi.nlm.nih.gov/pubmed/24982866
http://dx.doi.org/10.1155/2014/352420
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author de Queiroz, Mayara R.
Mamede, Carla C. Neves
Fonseca, Kelly C.
de Morais, Nadia C. G.
de Sousa, Bruna B.
Santos-Filho, Norival A.
Beletti, Marcelo E.
Arantes, Eliane C.
Stanziola, Leonilda
de Oliveira, Fábio
author_facet de Queiroz, Mayara R.
Mamede, Carla C. Neves
Fonseca, Kelly C.
de Morais, Nadia C. G.
de Sousa, Bruna B.
Santos-Filho, Norival A.
Beletti, Marcelo E.
Arantes, Eliane C.
Stanziola, Leonilda
de Oliveira, Fábio
author_sort de Queiroz, Mayara R.
collection PubMed
description The present study aimed to evaluate the proteolytic and biological activities of a new metalloproteinase from B. moojeni venom. The purification of BmooMPα-II was carried out through two chromatographic steps (ion-exchange and affinity). BmooMPα-II is a monomeric protein with an apparent molecular mass of 22.5 kDa on SDS-PAGE 14% under nonreducing conditions. The N-terminal sequence (FSPRYIELVVVADHGMFTKYKSNLN) revealed homology with other snake venom metalloproteinases, mainly among P-I class. BmooMPα-II cleaves Aα-chain of fibrinogen followed by Bβ-chain, and does not show any effect on the γ-chain. Its optimum temperature and pH for the fibrinogenolytic activity were 30–50°C and pH 8, respectively. The inhibitory effects of EDTA and 1,10-phenantroline on the fibrinogenolytic activity suggest that BmooMPα-II is a metalloproteinase. This proteinase was devoid of haemorrhagic, coagulant, or anticoagulant activities. BmooMPα-II caused morphological alterations in liver, lung, kidney, and muscle of Swiss mice. The enzymatically active protein yet inhibited collagen, ADP, and ristocetin-induced platelet aggregation in a concentration-dependent manner. Our results suggest that BmooMPα-II contributes to the toxic effect of the envenomation and that more investigations to elucidate the mechanisms of inhibition of platelet aggregation may contribute to the studies of snake venom on thrombotic disorders.
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spelling pubmed-40586532014-06-30 Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity de Queiroz, Mayara R. Mamede, Carla C. Neves Fonseca, Kelly C. de Morais, Nadia C. G. de Sousa, Bruna B. Santos-Filho, Norival A. Beletti, Marcelo E. Arantes, Eliane C. Stanziola, Leonilda de Oliveira, Fábio Biomed Res Int Research Article The present study aimed to evaluate the proteolytic and biological activities of a new metalloproteinase from B. moojeni venom. The purification of BmooMPα-II was carried out through two chromatographic steps (ion-exchange and affinity). BmooMPα-II is a monomeric protein with an apparent molecular mass of 22.5 kDa on SDS-PAGE 14% under nonreducing conditions. The N-terminal sequence (FSPRYIELVVVADHGMFTKYKSNLN) revealed homology with other snake venom metalloproteinases, mainly among P-I class. BmooMPα-II cleaves Aα-chain of fibrinogen followed by Bβ-chain, and does not show any effect on the γ-chain. Its optimum temperature and pH for the fibrinogenolytic activity were 30–50°C and pH 8, respectively. The inhibitory effects of EDTA and 1,10-phenantroline on the fibrinogenolytic activity suggest that BmooMPα-II is a metalloproteinase. This proteinase was devoid of haemorrhagic, coagulant, or anticoagulant activities. BmooMPα-II caused morphological alterations in liver, lung, kidney, and muscle of Swiss mice. The enzymatically active protein yet inhibited collagen, ADP, and ristocetin-induced platelet aggregation in a concentration-dependent manner. Our results suggest that BmooMPα-II contributes to the toxic effect of the envenomation and that more investigations to elucidate the mechanisms of inhibition of platelet aggregation may contribute to the studies of snake venom on thrombotic disorders. Hindawi Publishing Corporation 2014 2014-06-01 /pmc/articles/PMC4058653/ /pubmed/24982866 http://dx.doi.org/10.1155/2014/352420 Text en Copyright © 2014 Mayara R. de Queiroz et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
de Queiroz, Mayara R.
Mamede, Carla C. Neves
Fonseca, Kelly C.
de Morais, Nadia C. G.
de Sousa, Bruna B.
Santos-Filho, Norival A.
Beletti, Marcelo E.
Arantes, Eliane C.
Stanziola, Leonilda
de Oliveira, Fábio
Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title_full Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title_fullStr Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title_full_unstemmed Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title_short Rapid Purification of a New P-I Class Metalloproteinase from Bothrops moojeni Venom with Antiplatelet Activity
title_sort rapid purification of a new p-i class metalloproteinase from bothrops moojeni venom with antiplatelet activity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4058653/
https://www.ncbi.nlm.nih.gov/pubmed/24982866
http://dx.doi.org/10.1155/2014/352420
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