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Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25

The protease myroilysin is the most abundant protease secreted by marine sedimental bacterium Myroides profundi D25. As a novel elastase of the M12 family, myroilysin has high elastin-degrading activity and strong collagen-swelling ability, suggesting its promising biotechnological potential. Becaus...

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Autores principales: Shao, Xuan, Ran, Li-Yuan, Liu, Chang, Chen, Xiu-Lan, Zhang, Xi-Ying, Qin, Qi-Long, Zhou, Bai-Cheng, Zhang, Yu-Zhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331793/
https://www.ncbi.nlm.nih.gov/pubmed/26132910
http://dx.doi.org/10.3390/molecules200711891
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author Shao, Xuan
Ran, Li-Yuan
Liu, Chang
Chen, Xiu-Lan
Zhang, Xi-Ying
Qin, Qi-Long
Zhou, Bai-Cheng
Zhang, Yu-Zhong
author_facet Shao, Xuan
Ran, Li-Yuan
Liu, Chang
Chen, Xiu-Lan
Zhang, Xi-Ying
Qin, Qi-Long
Zhou, Bai-Cheng
Zhang, Yu-Zhong
author_sort Shao, Xuan
collection PubMed
description The protease myroilysin is the most abundant protease secreted by marine sedimental bacterium Myroides profundi D25. As a novel elastase of the M12 family, myroilysin has high elastin-degrading activity and strong collagen-swelling ability, suggesting its promising biotechnological potential. Because myroilysin cannot be maturely expressed in Escherichia coli, it is important to be able to improve the production of myroilysin in the wild strain D25. We optimized the culture conditions of strain D25 for protease production by using single factor experiments. Under the optimized conditions, the protease activity of strain D25 reached 1137 ± 53.29 U/mL, i.e., 174% of that before optimization (652 ± 23.78 U/mL). We then conducted small scale fermentations of D25 in a 7.5 L fermentor. The protease activity of strain D25 in small scale fermentations reached 1546.4 ± 82.65 U/mL after parameter optimization. Based on the small scale fermentation results, we further conducted pilot scale fermentations of D25 in a 200 L fermentor, in which the protease production of D25 reached approximately 1100 U/mL. These results indicate that we successfully set up the small and pilot scale fermentation processes of strain D25 for myroilysin production, which should be helpful for the industrial production of myroilysin and the development of its biotechnological potential.
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spelling pubmed-63317932019-01-24 Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25 Shao, Xuan Ran, Li-Yuan Liu, Chang Chen, Xiu-Lan Zhang, Xi-Ying Qin, Qi-Long Zhou, Bai-Cheng Zhang, Yu-Zhong Molecules Article The protease myroilysin is the most abundant protease secreted by marine sedimental bacterium Myroides profundi D25. As a novel elastase of the M12 family, myroilysin has high elastin-degrading activity and strong collagen-swelling ability, suggesting its promising biotechnological potential. Because myroilysin cannot be maturely expressed in Escherichia coli, it is important to be able to improve the production of myroilysin in the wild strain D25. We optimized the culture conditions of strain D25 for protease production by using single factor experiments. Under the optimized conditions, the protease activity of strain D25 reached 1137 ± 53.29 U/mL, i.e., 174% of that before optimization (652 ± 23.78 U/mL). We then conducted small scale fermentations of D25 in a 7.5 L fermentor. The protease activity of strain D25 in small scale fermentations reached 1546.4 ± 82.65 U/mL after parameter optimization. Based on the small scale fermentation results, we further conducted pilot scale fermentations of D25 in a 200 L fermentor, in which the protease production of D25 reached approximately 1100 U/mL. These results indicate that we successfully set up the small and pilot scale fermentation processes of strain D25 for myroilysin production, which should be helpful for the industrial production of myroilysin and the development of its biotechnological potential. MDPI 2015-06-29 /pmc/articles/PMC6331793/ /pubmed/26132910 http://dx.doi.org/10.3390/molecules200711891 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Shao, Xuan
Ran, Li-Yuan
Liu, Chang
Chen, Xiu-Lan
Zhang, Xi-Ying
Qin, Qi-Long
Zhou, Bai-Cheng
Zhang, Yu-Zhong
Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title_full Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title_fullStr Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title_full_unstemmed Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title_short Culture Condition Optimization and Pilot Scale Production of the M12 Metalloprotease Myroilysin Produced by the Deep-Sea Bacterium Myroides profundi D25
title_sort culture condition optimization and pilot scale production of the m12 metalloprotease myroilysin produced by the deep-sea bacterium myroides profundi d25
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6331793/
https://www.ncbi.nlm.nih.gov/pubmed/26132910
http://dx.doi.org/10.3390/molecules200711891
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