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Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor

Laccases belong to the group of phenol oxidizes and constitute one of the most promising classes of enzymes for future use in various fields. For industrial and biotechnological purposes, laccases were among the first enzymes providing larger-scale applications such as removal of polyphenols or conv...

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Autores principales: Kucharzyk, K. H., Janusz, G., Karczmarczyk, I., Rogalski, J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer-Verlag 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3514700/
https://www.ncbi.nlm.nih.gov/pubmed/23093366
http://dx.doi.org/10.1007/s12010-012-9912-4
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author Kucharzyk, K. H.
Janusz, G.
Karczmarczyk, I.
Rogalski, J.
author_facet Kucharzyk, K. H.
Janusz, G.
Karczmarczyk, I.
Rogalski, J.
author_sort Kucharzyk, K. H.
collection PubMed
description Laccases belong to the group of phenol oxidizes and constitute one of the most promising classes of enzymes for future use in various fields. For industrial and biotechnological purposes, laccases were among the first enzymes providing larger-scale applications such as removal of polyphenols or conversion of toxic compounds. The wood-degrading basidiomycete Cerrena unicolor C-139, reported in this study, is one of the high-laccase producers. In order to facilitate novel and more efficient biocatalytic process applications, there is a need for laccases with improved biochemical properties, such as thermostability or stability in broad ranges of pH. In this work, modifications of laccase isoforms by hydrophobization, hydrophilization, and polymerization were performed. The hydrophobized and hydrophilized enzyme showed enhanced surface activity and higher ranges of pH and temperatures in comparison to its native form. However, performed modifications did not appear to noticeably alter enzyme’s native structure possibly due to the formation of coating by particles of saccharides around the molecule. Additionally, surface charge of modified laccase shifted towards the negative charge for the hydrophobized laccase forms. In all tested modifications, the size exclusion method led to average 80 % inhibition removal for hydrophilized samples after an hour of incubation with fluoride ions. Samples that were hydrophilized with lactose and cellobiose showed an additional 90 % reversibility of inhibition by fluoride ions after an hour of concluding the reaction and 40 % after 24 h. The hydrophobized laccase showed higher level of the reversibility after 1 h (above 80 %) and 24 h (above 70 %) incubation with fluoride ions. The addition of ascorbate to laccase solution before a fluoride spike resulted in more efficient reversibility of fluoride inhibitory effect in comparison to the treatments with reagents used in the reversed sequence.
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spelling pubmed-35147002012-12-05 Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor Kucharzyk, K. H. Janusz, G. Karczmarczyk, I. Rogalski, J. Appl Biochem Biotechnol Article Laccases belong to the group of phenol oxidizes and constitute one of the most promising classes of enzymes for future use in various fields. For industrial and biotechnological purposes, laccases were among the first enzymes providing larger-scale applications such as removal of polyphenols or conversion of toxic compounds. The wood-degrading basidiomycete Cerrena unicolor C-139, reported in this study, is one of the high-laccase producers. In order to facilitate novel and more efficient biocatalytic process applications, there is a need for laccases with improved biochemical properties, such as thermostability or stability in broad ranges of pH. In this work, modifications of laccase isoforms by hydrophobization, hydrophilization, and polymerization were performed. The hydrophobized and hydrophilized enzyme showed enhanced surface activity and higher ranges of pH and temperatures in comparison to its native form. However, performed modifications did not appear to noticeably alter enzyme’s native structure possibly due to the formation of coating by particles of saccharides around the molecule. Additionally, surface charge of modified laccase shifted towards the negative charge for the hydrophobized laccase forms. In all tested modifications, the size exclusion method led to average 80 % inhibition removal for hydrophilized samples after an hour of incubation with fluoride ions. Samples that were hydrophilized with lactose and cellobiose showed an additional 90 % reversibility of inhibition by fluoride ions after an hour of concluding the reaction and 40 % after 24 h. The hydrophobized laccase showed higher level of the reversibility after 1 h (above 80 %) and 24 h (above 70 %) incubation with fluoride ions. The addition of ascorbate to laccase solution before a fluoride spike resulted in more efficient reversibility of fluoride inhibitory effect in comparison to the treatments with reagents used in the reversed sequence. Springer-Verlag 2012-10-24 2012 /pmc/articles/PMC3514700/ /pubmed/23093366 http://dx.doi.org/10.1007/s12010-012-9912-4 Text en © The Author(s) 2012 https://creativecommons.org/licenses/by/4.0/ This article is distributed under the terms of the Creative Commons Attribution License which permits any use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Article
Kucharzyk, K. H.
Janusz, G.
Karczmarczyk, I.
Rogalski, J.
Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title_full Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title_fullStr Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title_full_unstemmed Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title_short Chemical Modifications of Laccase from White-Rot Basidiomycete Cerrena unicolor
title_sort chemical modifications of laccase from white-rot basidiomycete cerrena unicolor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3514700/
https://www.ncbi.nlm.nih.gov/pubmed/23093366
http://dx.doi.org/10.1007/s12010-012-9912-4
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