Cargando…

Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads

A 32-fold increase in laccase activity production by the thermophilic biomass-degrading fungus T. terrestris Co3Bag1 was achieved when the microorganism was grown on a modified medium containing fructose, sodium nitrate, and copper. A 70 kDa laccase (TtLacA), produced under the above conditions, was...

Descripción completa

Detalles Bibliográficos
Autores principales: Gutiérrez-Antón, Marina, Santiago-Hernández, Alejandro, Rodríguez-Mendoza, Johan, Cano-Ramírez, Claudia, Bustos-Jaimes, Ismael, Aguilar-Osorio, Guillermo, Campos, Jorge E., Hidalgo-Lara, María Eugenia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057929/
https://www.ncbi.nlm.nih.gov/pubmed/36983476
http://dx.doi.org/10.3390/jof9030308
_version_ 1785016492825247744
author Gutiérrez-Antón, Marina
Santiago-Hernández, Alejandro
Rodríguez-Mendoza, Johan
Cano-Ramírez, Claudia
Bustos-Jaimes, Ismael
Aguilar-Osorio, Guillermo
Campos, Jorge E.
Hidalgo-Lara, María Eugenia
author_facet Gutiérrez-Antón, Marina
Santiago-Hernández, Alejandro
Rodríguez-Mendoza, Johan
Cano-Ramírez, Claudia
Bustos-Jaimes, Ismael
Aguilar-Osorio, Guillermo
Campos, Jorge E.
Hidalgo-Lara, María Eugenia
author_sort Gutiérrez-Antón, Marina
collection PubMed
description A 32-fold increase in laccase activity production by the thermophilic biomass-degrading fungus T. terrestris Co3Bag1 was achieved when the microorganism was grown on a modified medium containing fructose, sodium nitrate, and copper. A 70 kDa laccase (TtLacA), produced under the above conditions, was purified, immobilized in copper alginate gel beads, and characterized. TtLacA, both free and immobilized enzymes, exhibited optimal activity at pH 3.0, at a temperature of 65 and 70 °C, respectively, although both displayed 70% of activity from 40 to 70 °C. Free and immobilized enzymes retained at least 80% of relative activity in the pH range from 3 to 4.6. Immobilized TtLacA manifested a 2.3-fold higher thermal stability than the free form of the enzyme at 60 and 70 °C. Immobilized TtLacA retained 95% initial activity for six consecutive reuse cycles at 60 °C, and also retained 86% of initial activity after 12 days of storage at 4 °C. Based on the biochemical features, thermophilic TtLacA may be an efficient enzyme for dye decolorization and other industrial applications at high temperatures or acidic conditions. This work represents the first report about the immobilization and biochemical characterization of a thermophilic laccase from a member of the genus Thielavia.
format Online
Article
Text
id pubmed-10057929
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-100579292023-03-30 Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads Gutiérrez-Antón, Marina Santiago-Hernández, Alejandro Rodríguez-Mendoza, Johan Cano-Ramírez, Claudia Bustos-Jaimes, Ismael Aguilar-Osorio, Guillermo Campos, Jorge E. Hidalgo-Lara, María Eugenia J Fungi (Basel) Article A 32-fold increase in laccase activity production by the thermophilic biomass-degrading fungus T. terrestris Co3Bag1 was achieved when the microorganism was grown on a modified medium containing fructose, sodium nitrate, and copper. A 70 kDa laccase (TtLacA), produced under the above conditions, was purified, immobilized in copper alginate gel beads, and characterized. TtLacA, both free and immobilized enzymes, exhibited optimal activity at pH 3.0, at a temperature of 65 and 70 °C, respectively, although both displayed 70% of activity from 40 to 70 °C. Free and immobilized enzymes retained at least 80% of relative activity in the pH range from 3 to 4.6. Immobilized TtLacA manifested a 2.3-fold higher thermal stability than the free form of the enzyme at 60 and 70 °C. Immobilized TtLacA retained 95% initial activity for six consecutive reuse cycles at 60 °C, and also retained 86% of initial activity after 12 days of storage at 4 °C. Based on the biochemical features, thermophilic TtLacA may be an efficient enzyme for dye decolorization and other industrial applications at high temperatures or acidic conditions. This work represents the first report about the immobilization and biochemical characterization of a thermophilic laccase from a member of the genus Thielavia. MDPI 2023-02-28 /pmc/articles/PMC10057929/ /pubmed/36983476 http://dx.doi.org/10.3390/jof9030308 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Gutiérrez-Antón, Marina
Santiago-Hernández, Alejandro
Rodríguez-Mendoza, Johan
Cano-Ramírez, Claudia
Bustos-Jaimes, Ismael
Aguilar-Osorio, Guillermo
Campos, Jorge E.
Hidalgo-Lara, María Eugenia
Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title_full Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title_fullStr Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title_full_unstemmed Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title_short Improvement of Laccase Production by Thielavia terrestris Co3Bag1. Enhancing the Bio-Catalytic Performance of the Native Thermophilic TtLacA via Immobilization in Copper Alginate Gel Beads
title_sort improvement of laccase production by thielavia terrestris co3bag1. enhancing the bio-catalytic performance of the native thermophilic ttlaca via immobilization in copper alginate gel beads
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10057929/
https://www.ncbi.nlm.nih.gov/pubmed/36983476
http://dx.doi.org/10.3390/jof9030308
work_keys_str_mv AT gutierrezantonmarina improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT santiagohernandezalejandro improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT rodriguezmendozajohan improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT canoramirezclaudia improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT bustosjaimesismael improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT aguilarosorioguillermo improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT camposjorgee improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads
AT hidalgolaramariaeugenia improvementoflaccaseproductionbythielaviaterrestrisco3bag1enhancingthebiocatalyticperformanceofthenativethermophilicttlacaviaimmobilizationincopperalginategelbeads