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Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613

The ocean harbors a variety of bacteria that contain huge protease resources and offer a great potential for industrial and biotechnological applications. Here, we isolated a protease-secreting bacterium Vibrio pomeroyi strain 12613 from Atlantic seawater and purified a protease VP9 from strain 1261...

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Autores principales: Wang, Yan, Liu, Bai-Xue, Cheng, Jun-Hui, Su, Hai-Nan, Sun, He-Min, Li, Chun-Yang, Yang, Liuyan, Shen, Qing-Tao, Zhang, Yu-Zhong, Zhang, Xia, Chen, Xiu-Lan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7426729/
https://www.ncbi.nlm.nih.gov/pubmed/32849455
http://dx.doi.org/10.3389/fmicb.2020.01868
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author Wang, Yan
Liu, Bai-Xue
Cheng, Jun-Hui
Su, Hai-Nan
Sun, He-Min
Li, Chun-Yang
Yang, Liuyan
Shen, Qing-Tao
Zhang, Yu-Zhong
Zhang, Xia
Chen, Xiu-Lan
author_facet Wang, Yan
Liu, Bai-Xue
Cheng, Jun-Hui
Su, Hai-Nan
Sun, He-Min
Li, Chun-Yang
Yang, Liuyan
Shen, Qing-Tao
Zhang, Yu-Zhong
Zhang, Xia
Chen, Xiu-Lan
author_sort Wang, Yan
collection PubMed
description The ocean harbors a variety of bacteria that contain huge protease resources and offer a great potential for industrial and biotechnological applications. Here, we isolated a protease-secreting bacterium Vibrio pomeroyi strain 12613 from Atlantic seawater and purified a protease VP9 from strain 12613. VP9 was identified as a metalloprotease of the M4 family. VP9 could hydrolyze casein and gelatin but not elastin and collagen. With gelatin as the substrate, VP9 showed the highest activity at 40°C and pH 6.0–8.0. It was stable at temperatures of 50°C and less and in the range of pH 5.0–11.0. VP9 also had good tolerance to NaCl, non-ionic detergents, and organic solvent methanol. Unlike other M4 metalloproteases, VP9 has distinct collagen-swelling ability, and its collagen-swelling effect was concentration dependent. The relative expansion volume of collagen increased by approximately eightfold after treatment with 10 μM VP9 at 37°C for 12 h. The collagen-swelling mechanism of VP9 on bovine-insoluble type I collagen was further studied. Atomic force microscopy observation and biochemical analyses showed that VP9 can degrade proteoglycans in collagen fibers, resulting in the release of collagen fibrils from collagen fibers and the swelling of the latter. In addition, VP9 can degrade glycoproteins, a non-collagenous constituent interacting with collagen in the skin. The characteristics of VP9, such as sufficient specificity toward proteoglycans and glycoproteins but no activity toward collagen, suggest its promising potential in the unhairing and fiber-opening processing in leather industry.
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spelling pubmed-74267292020-08-25 Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613 Wang, Yan Liu, Bai-Xue Cheng, Jun-Hui Su, Hai-Nan Sun, He-Min Li, Chun-Yang Yang, Liuyan Shen, Qing-Tao Zhang, Yu-Zhong Zhang, Xia Chen, Xiu-Lan Front Microbiol Microbiology The ocean harbors a variety of bacteria that contain huge protease resources and offer a great potential for industrial and biotechnological applications. Here, we isolated a protease-secreting bacterium Vibrio pomeroyi strain 12613 from Atlantic seawater and purified a protease VP9 from strain 12613. VP9 was identified as a metalloprotease of the M4 family. VP9 could hydrolyze casein and gelatin but not elastin and collagen. With gelatin as the substrate, VP9 showed the highest activity at 40°C and pH 6.0–8.0. It was stable at temperatures of 50°C and less and in the range of pH 5.0–11.0. VP9 also had good tolerance to NaCl, non-ionic detergents, and organic solvent methanol. Unlike other M4 metalloproteases, VP9 has distinct collagen-swelling ability, and its collagen-swelling effect was concentration dependent. The relative expansion volume of collagen increased by approximately eightfold after treatment with 10 μM VP9 at 37°C for 12 h. The collagen-swelling mechanism of VP9 on bovine-insoluble type I collagen was further studied. Atomic force microscopy observation and biochemical analyses showed that VP9 can degrade proteoglycans in collagen fibers, resulting in the release of collagen fibrils from collagen fibers and the swelling of the latter. In addition, VP9 can degrade glycoproteins, a non-collagenous constituent interacting with collagen in the skin. The characteristics of VP9, such as sufficient specificity toward proteoglycans and glycoproteins but no activity toward collagen, suggest its promising potential in the unhairing and fiber-opening processing in leather industry. Frontiers Media S.A. 2020-08-07 /pmc/articles/PMC7426729/ /pubmed/32849455 http://dx.doi.org/10.3389/fmicb.2020.01868 Text en Copyright © 2020 Wang, Liu, Cheng, Su, Sun, Li, Yang, Shen, Zhang, Zhang and Chen. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Wang, Yan
Liu, Bai-Xue
Cheng, Jun-Hui
Su, Hai-Nan
Sun, He-Min
Li, Chun-Yang
Yang, Liuyan
Shen, Qing-Tao
Zhang, Yu-Zhong
Zhang, Xia
Chen, Xiu-Lan
Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title_full Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title_fullStr Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title_full_unstemmed Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title_short Characterization of a New M4 Metalloprotease With Collagen-Swelling Ability From Marine Vibrio pomeroyi Strain 12613
title_sort characterization of a new m4 metalloprotease with collagen-swelling ability from marine vibrio pomeroyi strain 12613
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7426729/
https://www.ncbi.nlm.nih.gov/pubmed/32849455
http://dx.doi.org/10.3389/fmicb.2020.01868
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