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Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp

The widely used insecticide beta-cypermethrin has become a public concern because of its environmental contamination and toxic effects on mammals. In this study, a novel beta-cypermethrin degrading enzyme designated as CMO was purified to apparent homogeneity from a Streptomyces sp. isolate capable...

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Autores principales: Chen, Shaohua, Lin, Qingsheng, Xiao, Ying, Deng, Yinyue, Chang, Changqing, Zhong, Guohua, Hu, Meiying, Zhang, Lian-Hui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787105/
https://www.ncbi.nlm.nih.gov/pubmed/24098697
http://dx.doi.org/10.1371/journal.pone.0075450
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author Chen, Shaohua
Lin, Qingsheng
Xiao, Ying
Deng, Yinyue
Chang, Changqing
Zhong, Guohua
Hu, Meiying
Zhang, Lian-Hui
author_facet Chen, Shaohua
Lin, Qingsheng
Xiao, Ying
Deng, Yinyue
Chang, Changqing
Zhong, Guohua
Hu, Meiying
Zhang, Lian-Hui
author_sort Chen, Shaohua
collection PubMed
description The widely used insecticide beta-cypermethrin has become a public concern because of its environmental contamination and toxic effects on mammals. In this study, a novel beta-cypermethrin degrading enzyme designated as CMO was purified to apparent homogeneity from a Streptomyces sp. isolate capable of utilizing beta-cypermethrin as a growth substrate. The native enzyme showed a monomeric structure with a molecular mass of 41 kDa and pI of 5.4. The enzyme exhibited the maximal activity at pH 7.5 and 30°C. It was fairly stable in the pH range from 6.5–8.5 and at temperatures below 10°C. The enzyme activity was significantly stimulated by Fe(2+), but strongly inhibited by Ag(+), Al(3+), and Cu(2+). The enzyme catalyzed the degradation of beta-cypermethrin to form five products via hydroxylation and diaryl cleavage. A novel beta-cypermethrin detoxification pathway was proposed based on analysis of these products. The purified enzyme was identified as a monooxygenase by matrix-assisted laser desorption/ionization time-of-flight/time-of-flight mass spectrometry analysis (MALDI-TOF-MS) and N-terminal protein sequencing. Given that all the characterized pyrethroid-degrading enzymes are the members of hydrolase family, CMO represents the first pyrethroid-degrading monooxygenase identified from environmental microorganisms. Taken together, our findings depict a novel pyrethroid degradation mechanism and indicate that the purified enzyme may be a promising candidate for detoxification of beta-cypermethrin and environmental protection.
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spelling pubmed-37871052013-10-04 Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp Chen, Shaohua Lin, Qingsheng Xiao, Ying Deng, Yinyue Chang, Changqing Zhong, Guohua Hu, Meiying Zhang, Lian-Hui PLoS One Research Article The widely used insecticide beta-cypermethrin has become a public concern because of its environmental contamination and toxic effects on mammals. In this study, a novel beta-cypermethrin degrading enzyme designated as CMO was purified to apparent homogeneity from a Streptomyces sp. isolate capable of utilizing beta-cypermethrin as a growth substrate. The native enzyme showed a monomeric structure with a molecular mass of 41 kDa and pI of 5.4. The enzyme exhibited the maximal activity at pH 7.5 and 30°C. It was fairly stable in the pH range from 6.5–8.5 and at temperatures below 10°C. The enzyme activity was significantly stimulated by Fe(2+), but strongly inhibited by Ag(+), Al(3+), and Cu(2+). The enzyme catalyzed the degradation of beta-cypermethrin to form five products via hydroxylation and diaryl cleavage. A novel beta-cypermethrin detoxification pathway was proposed based on analysis of these products. The purified enzyme was identified as a monooxygenase by matrix-assisted laser desorption/ionization time-of-flight/time-of-flight mass spectrometry analysis (MALDI-TOF-MS) and N-terminal protein sequencing. Given that all the characterized pyrethroid-degrading enzymes are the members of hydrolase family, CMO represents the first pyrethroid-degrading monooxygenase identified from environmental microorganisms. Taken together, our findings depict a novel pyrethroid degradation mechanism and indicate that the purified enzyme may be a promising candidate for detoxification of beta-cypermethrin and environmental protection. Public Library of Science 2013-09-30 /pmc/articles/PMC3787105/ /pubmed/24098697 http://dx.doi.org/10.1371/journal.pone.0075450 Text en © 2013 Chen et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Chen, Shaohua
Lin, Qingsheng
Xiao, Ying
Deng, Yinyue
Chang, Changqing
Zhong, Guohua
Hu, Meiying
Zhang, Lian-Hui
Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title_full Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title_fullStr Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title_full_unstemmed Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title_short Monooxygenase, a Novel Beta-Cypermethrin Degrading Enzyme from Streptomyces sp
title_sort monooxygenase, a novel beta-cypermethrin degrading enzyme from streptomyces sp
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3787105/
https://www.ncbi.nlm.nih.gov/pubmed/24098697
http://dx.doi.org/10.1371/journal.pone.0075450
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