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Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora

The herbicide diuron (3-(3,4-dichlorophenyl)-1,1-dimethylurea) is used in many agricultural crops and non-crop areas worldwide, leading to the pollution of the aquatic environment by soil leaching. White rot fungi and its lignin modifying enzymes, peroxidases and laccases, are responsible for its de...

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Autores principales: Vieira, Ana Carolina, Marschalk, Cidnei, Biavatti, Débora Carina, Lorscheider, Carla Andréia, Peralta, Rosane Marina, Seixas, Flavio Augusto Vicente
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Biomedical Informatics 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464537/
https://www.ncbi.nlm.nih.gov/pubmed/26124565
http://dx.doi.org/10.6026/97320630011224
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author Vieira, Ana Carolina
Marschalk, Cidnei
Biavatti, Débora Carina
Lorscheider, Carla Andréia
Peralta, Rosane Marina
Seixas, Flavio Augusto Vicente
author_facet Vieira, Ana Carolina
Marschalk, Cidnei
Biavatti, Débora Carina
Lorscheider, Carla Andréia
Peralta, Rosane Marina
Seixas, Flavio Augusto Vicente
author_sort Vieira, Ana Carolina
collection PubMed
description The herbicide diuron (3-(3,4-dichlorophenyl)-1,1-dimethylurea) is used in many agricultural crops and non-crop areas worldwide, leading to the pollution of the aquatic environment by soil leaching. White rot fungi and its lignin modifying enzymes, peroxidases and laccases, are responsible for its degradation. Therefore, it is of interest to explore the potential use of Ceriporiopsis subvermispora laccase (CersuLac1) in the biotransformation of this herbicide by using its enzyme laccase. However, the structure of laccase from Ceriporiopsis subvermispora is still unknown. Hence, a model of laccase was constructed using homology modeling. The model was further used to dock p-methylbenzoate in the presence of four copper ions to analyze molecular basis of its binding and interaction. The ligand-protein interaction is stereo-chemically favorable in nature. The presence of the single protonated Lys457 was necessary for catalysis, being coordinated by a cupper ion. The best pose of diuron on CersuLac1 has a theoretical Ki of 2.91 mM. This is comparable to the KM values for laccases from other organisms with similar compounds. Thus, we document the insights for the potential use of laccase from Ceriporiopsis subvermispora in the biotransfrormation of diuron.
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spelling pubmed-44645372015-06-29 Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora Vieira, Ana Carolina Marschalk, Cidnei Biavatti, Débora Carina Lorscheider, Carla Andréia Peralta, Rosane Marina Seixas, Flavio Augusto Vicente Bioinformation Hypothesis The herbicide diuron (3-(3,4-dichlorophenyl)-1,1-dimethylurea) is used in many agricultural crops and non-crop areas worldwide, leading to the pollution of the aquatic environment by soil leaching. White rot fungi and its lignin modifying enzymes, peroxidases and laccases, are responsible for its degradation. Therefore, it is of interest to explore the potential use of Ceriporiopsis subvermispora laccase (CersuLac1) in the biotransformation of this herbicide by using its enzyme laccase. However, the structure of laccase from Ceriporiopsis subvermispora is still unknown. Hence, a model of laccase was constructed using homology modeling. The model was further used to dock p-methylbenzoate in the presence of four copper ions to analyze molecular basis of its binding and interaction. The ligand-protein interaction is stereo-chemically favorable in nature. The presence of the single protonated Lys457 was necessary for catalysis, being coordinated by a cupper ion. The best pose of diuron on CersuLac1 has a theoretical Ki of 2.91 mM. This is comparable to the KM values for laccases from other organisms with similar compounds. Thus, we document the insights for the potential use of laccase from Ceriporiopsis subvermispora in the biotransfrormation of diuron. Biomedical Informatics 2015-05-28 /pmc/articles/PMC4464537/ /pubmed/26124565 http://dx.doi.org/10.6026/97320630011224 Text en © 2015 Biomedical Informatics This is an open-access article, which permits unrestricted use, distribution, and reproduction in any medium, for non-commercial purposes, provided the original author and source are credited.
spellingShingle Hypothesis
Vieira, Ana Carolina
Marschalk, Cidnei
Biavatti, Débora Carina
Lorscheider, Carla Andréia
Peralta, Rosane Marina
Seixas, Flavio Augusto Vicente
Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title_full Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title_fullStr Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title_full_unstemmed Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title_short Modeling Based Structural Insights into Biodegradation of the Herbicide Diuron by Laccase-1 from Ceriporiopsis subvermispora
title_sort modeling based structural insights into biodegradation of the herbicide diuron by laccase-1 from ceriporiopsis subvermispora
topic Hypothesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4464537/
https://www.ncbi.nlm.nih.gov/pubmed/26124565
http://dx.doi.org/10.6026/97320630011224
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