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Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases

We aim to clarify the ligninolytic capabilities of dye-decolorizing peroxidases (DyPs) from bacteria and fungi, compared to fungal lignin peroxidase (LiP) and versatile peroxidase (VP). With this purpose, DyPs from Amycolatopsis sp., Thermomonospora curvata, and Auricularia auricula-judae, VP from P...

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Autores principales: Linde, Dolores, Ayuso-Fernández, Iván, Laloux, Marcos, Aguiar-Cervera, José E., de Lacey, Antonio L., Ruiz-Dueñas, Francisco J., Martínez, Angel T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961821/
https://www.ncbi.nlm.nih.gov/pubmed/33807844
http://dx.doi.org/10.3390/ijms22052629
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author Linde, Dolores
Ayuso-Fernández, Iván
Laloux, Marcos
Aguiar-Cervera, José E.
de Lacey, Antonio L.
Ruiz-Dueñas, Francisco J.
Martínez, Angel T.
author_facet Linde, Dolores
Ayuso-Fernández, Iván
Laloux, Marcos
Aguiar-Cervera, José E.
de Lacey, Antonio L.
Ruiz-Dueñas, Francisco J.
Martínez, Angel T.
author_sort Linde, Dolores
collection PubMed
description We aim to clarify the ligninolytic capabilities of dye-decolorizing peroxidases (DyPs) from bacteria and fungi, compared to fungal lignin peroxidase (LiP) and versatile peroxidase (VP). With this purpose, DyPs from Amycolatopsis sp., Thermomonospora curvata, and Auricularia auricula-judae, VP from Pleurotus eryngii, and LiP from Phanerochaete chrysosporium were produced, and their kinetic constants and reduction potentials determined. Sharp differences were found in the oxidation of nonphenolic simple (veratryl alcohol, VA) and dimeric (veratrylglycerol-β- guaiacyl ether, VGE) lignin model compounds, with LiP showing the highest catalytic efficiencies (around 15 and 200 s(−1)·mM(−1) for VGE and VA, respectively), while the efficiency of the A. auricula-judae DyP was 1–3 orders of magnitude lower, and no activity was detected with the bacterial DyPs. VP and LiP also showed the highest reduction potential (1.28–1.33 V) in the rate-limiting step of the catalytic cycle (i.e., compound-II reduction to resting enzyme), estimated by stopped-flow measurements at the equilibrium, while the T. curvata DyP showed the lowest value (1.23 V). We conclude that, when using realistic enzyme doses, only fungal LiP and VP, and in much lower extent fungal DyP, oxidize nonphenolic aromatics and, therefore, have the capability to act on the main moiety of the native lignin macromolecule.
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spelling pubmed-79618212021-03-17 Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases Linde, Dolores Ayuso-Fernández, Iván Laloux, Marcos Aguiar-Cervera, José E. de Lacey, Antonio L. Ruiz-Dueñas, Francisco J. Martínez, Angel T. Int J Mol Sci Article We aim to clarify the ligninolytic capabilities of dye-decolorizing peroxidases (DyPs) from bacteria and fungi, compared to fungal lignin peroxidase (LiP) and versatile peroxidase (VP). With this purpose, DyPs from Amycolatopsis sp., Thermomonospora curvata, and Auricularia auricula-judae, VP from Pleurotus eryngii, and LiP from Phanerochaete chrysosporium were produced, and their kinetic constants and reduction potentials determined. Sharp differences were found in the oxidation of nonphenolic simple (veratryl alcohol, VA) and dimeric (veratrylglycerol-β- guaiacyl ether, VGE) lignin model compounds, with LiP showing the highest catalytic efficiencies (around 15 and 200 s(−1)·mM(−1) for VGE and VA, respectively), while the efficiency of the A. auricula-judae DyP was 1–3 orders of magnitude lower, and no activity was detected with the bacterial DyPs. VP and LiP also showed the highest reduction potential (1.28–1.33 V) in the rate-limiting step of the catalytic cycle (i.e., compound-II reduction to resting enzyme), estimated by stopped-flow measurements at the equilibrium, while the T. curvata DyP showed the lowest value (1.23 V). We conclude that, when using realistic enzyme doses, only fungal LiP and VP, and in much lower extent fungal DyP, oxidize nonphenolic aromatics and, therefore, have the capability to act on the main moiety of the native lignin macromolecule. MDPI 2021-03-05 /pmc/articles/PMC7961821/ /pubmed/33807844 http://dx.doi.org/10.3390/ijms22052629 Text en © 2021 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Linde, Dolores
Ayuso-Fernández, Iván
Laloux, Marcos
Aguiar-Cervera, José E.
de Lacey, Antonio L.
Ruiz-Dueñas, Francisco J.
Martínez, Angel T.
Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title_full Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title_fullStr Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title_full_unstemmed Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title_short Comparing Ligninolytic Capabilities of Bacterial and Fungal Dye-Decolorizing Peroxidases and Class-II Peroxidase-Catalases
title_sort comparing ligninolytic capabilities of bacterial and fungal dye-decolorizing peroxidases and class-ii peroxidase-catalases
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7961821/
https://www.ncbi.nlm.nih.gov/pubmed/33807844
http://dx.doi.org/10.3390/ijms22052629
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