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Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production

BACKGROUND: Proteases play an important role in food, leather, detergent, and medical technologies. OBJECTIVES: In the current study, an alkaliphilic solvent-stable thermotolerant metalloprotease was isolated from Bacillus sp. DEM05. MATERIAL AND METHODS: For culture optimization, carbon, and nitrog...

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Autores principales: Mohamadi, Shohreh, Mehrabi, Maryam, Sajadimajd, Soraya
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Institute of Genetic Engineering and Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8590717/
https://www.ncbi.nlm.nih.gov/pubmed/34825018
http://dx.doi.org/10.30498/ijb.2021.247161.2866
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author Mohamadi, Shohreh
Mehrabi, Maryam
Sajadimajd, Soraya
author_facet Mohamadi, Shohreh
Mehrabi, Maryam
Sajadimajd, Soraya
author_sort Mohamadi, Shohreh
collection PubMed
description BACKGROUND: Proteases play an important role in food, leather, detergent, and medical technologies. OBJECTIVES: In the current study, an alkaliphilic solvent-stable thermotolerant metalloprotease was isolated from Bacillus sp. DEM05. MATERIAL AND METHODS: For culture optimization, carbon, and nitrogen sources as well as incubation temperature, pH, and time were examined. RESULTS: Herein the highest outcome for bacterial growth and protease production was obtained after 72 h incubation (pH 7) at 37 °C. DEM05 protease was successfully purified and the specific activity of the protease was 1075 U.mg(-1). The purity of the enzyme was verified by SDS-PAGE electrophoresis as a single band of 30 kDa. The optimal activity of the enzyme was at pH 10 and 50 °C. H(2)O(2), SDS, Triton X-100, Zn(2+), Co(2+), and Cu(2+) could increase the protease activity. EDTA inhibited the protease activity, revealed that it can be classified as a metalloprotease. The enzyme was compatible with the water-miscible and water-immiscible organic solvents and proteolyzed several substrates, implying the wide substrate specificity. CONCLUSIONS: The results brought convincing evidence that DEM05 protease could be recruited as a novel prevailing protease that can be earmarked on industrial and medical technologies.
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spelling pubmed-85907172021-11-24 Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production Mohamadi, Shohreh Mehrabi, Maryam Sajadimajd, Soraya Iran J Biotechnol Research Article BACKGROUND: Proteases play an important role in food, leather, detergent, and medical technologies. OBJECTIVES: In the current study, an alkaliphilic solvent-stable thermotolerant metalloprotease was isolated from Bacillus sp. DEM05. MATERIAL AND METHODS: For culture optimization, carbon, and nitrogen sources as well as incubation temperature, pH, and time were examined. RESULTS: Herein the highest outcome for bacterial growth and protease production was obtained after 72 h incubation (pH 7) at 37 °C. DEM05 protease was successfully purified and the specific activity of the protease was 1075 U.mg(-1). The purity of the enzyme was verified by SDS-PAGE electrophoresis as a single band of 30 kDa. The optimal activity of the enzyme was at pH 10 and 50 °C. H(2)O(2), SDS, Triton X-100, Zn(2+), Co(2+), and Cu(2+) could increase the protease activity. EDTA inhibited the protease activity, revealed that it can be classified as a metalloprotease. The enzyme was compatible with the water-miscible and water-immiscible organic solvents and proteolyzed several substrates, implying the wide substrate specificity. CONCLUSIONS: The results brought convincing evidence that DEM05 protease could be recruited as a novel prevailing protease that can be earmarked on industrial and medical technologies. National Institute of Genetic Engineering and Biotechnology 2021-07-01 /pmc/articles/PMC8590717/ /pubmed/34825018 http://dx.doi.org/10.30498/ijb.2021.247161.2866 Text en Copyright: © 2021 The Author(s); Published by Iranian Journal of Biotechnology https://creativecommons.org/licenses/by-nc/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 Unported License, ( http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) ) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Mohamadi, Shohreh
Mehrabi, Maryam
Sajadimajd, Soraya
Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title_full Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title_fullStr Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title_full_unstemmed Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title_short Purification and Characterization of an Extracellular Alkaline Solvent-stable Metalloprotease Secreted from Newly Isolated Bacillus sp. DEM05: Optimization of Protease Production
title_sort purification and characterization of an extracellular alkaline solvent-stable metalloprotease secreted from newly isolated bacillus sp. dem05: optimization of protease production
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8590717/
https://www.ncbi.nlm.nih.gov/pubmed/34825018
http://dx.doi.org/10.30498/ijb.2021.247161.2866
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