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Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11

Lignin, a complex heteropolymer present in plant cell walls, is now recognized as a valuable renewable resource with potential applications in various industries. The lignin biorefinery concept, which aims to convert lignin into value-added products, has gained significant attention in recent years....

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Autores principales: Robles-Machuca, Marcela, Aviles-Mejía, Lucero, Romero-Soto, Itzel Celeste, Rodríguez, Jorge A., Armenta-Pérez, Vicente Paúl, Camacho-Ruiz, María Angeles
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10616338/
https://www.ncbi.nlm.nih.gov/pubmed/37916079
http://dx.doi.org/10.1016/j.heliyon.2023.e21006
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author Robles-Machuca, Marcela
Aviles-Mejía, Lucero
Romero-Soto, Itzel Celeste
Rodríguez, Jorge A.
Armenta-Pérez, Vicente Paúl
Camacho-Ruiz, María Angeles
author_facet Robles-Machuca, Marcela
Aviles-Mejía, Lucero
Romero-Soto, Itzel Celeste
Rodríguez, Jorge A.
Armenta-Pérez, Vicente Paúl
Camacho-Ruiz, María Angeles
author_sort Robles-Machuca, Marcela
collection PubMed
description Lignin, a complex heteropolymer present in plant cell walls, is now recognized as a valuable renewable resource with potential applications in various industries. The lignin biorefinery concept, which aims to convert lignin into value-added products, has gained significant attention in recent years. β-etherases, enzymes that selectively cleave β-O-4 aryl ether bonds in lignin, have shown promise in lignin depolymerization. In this study, the β-etherase LigF from Altererythrobacter sp. B11 was cloned, expressed, purified, and biochemically characterized. The LigF-AB11 enzyme exhibited optimal activity at 32 °C and pH 8.5 when catalyzing the substrate PNP-AV. The enzyme displayed mesophilic behavior and demonstrated higher activity at moderate temperatures. Stability analysis revealed that LigF-AB11 was not thermostable, with a complete loss of activity at 60 °C within an hour. Moreover, LigF-AB11 exhibited excellent pH stability, retaining over 50 % of its activity after 1 h under pH conditions ranging from 3.0 to 11.0. Metal ions and surface impregnation agents were found to affect the enzyme's activity, highlighting the importance of considering these factors in enzymatic processes for lignin depolymerization. This study provides valuable insights into the biochemical properties of LigF-AB11 and contributes to the development of efficient enzymatic processes for lignin biorefineries. Further optimization and understanding of β-etherases will facilitate their practical application in the valorization of lignin.
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spelling pubmed-106163382023-11-01 Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11 Robles-Machuca, Marcela Aviles-Mejía, Lucero Romero-Soto, Itzel Celeste Rodríguez, Jorge A. Armenta-Pérez, Vicente Paúl Camacho-Ruiz, María Angeles Heliyon Research Article Lignin, a complex heteropolymer present in plant cell walls, is now recognized as a valuable renewable resource with potential applications in various industries. The lignin biorefinery concept, which aims to convert lignin into value-added products, has gained significant attention in recent years. β-etherases, enzymes that selectively cleave β-O-4 aryl ether bonds in lignin, have shown promise in lignin depolymerization. In this study, the β-etherase LigF from Altererythrobacter sp. B11 was cloned, expressed, purified, and biochemically characterized. The LigF-AB11 enzyme exhibited optimal activity at 32 °C and pH 8.5 when catalyzing the substrate PNP-AV. The enzyme displayed mesophilic behavior and demonstrated higher activity at moderate temperatures. Stability analysis revealed that LigF-AB11 was not thermostable, with a complete loss of activity at 60 °C within an hour. Moreover, LigF-AB11 exhibited excellent pH stability, retaining over 50 % of its activity after 1 h under pH conditions ranging from 3.0 to 11.0. Metal ions and surface impregnation agents were found to affect the enzyme's activity, highlighting the importance of considering these factors in enzymatic processes for lignin depolymerization. This study provides valuable insights into the biochemical properties of LigF-AB11 and contributes to the development of efficient enzymatic processes for lignin biorefineries. Further optimization and understanding of β-etherases will facilitate their practical application in the valorization of lignin. Elsevier 2023-10-14 /pmc/articles/PMC10616338/ /pubmed/37916079 http://dx.doi.org/10.1016/j.heliyon.2023.e21006 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Robles-Machuca, Marcela
Aviles-Mejía, Lucero
Romero-Soto, Itzel Celeste
Rodríguez, Jorge A.
Armenta-Pérez, Vicente Paúl
Camacho-Ruiz, María Angeles
Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title_full Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title_fullStr Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title_full_unstemmed Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title_short Cloning, expression, and biochemical characterization of β-etherase LigF from Altererythrobacter sp. B11
title_sort cloning, expression, and biochemical characterization of β-etherase ligf from altererythrobacter sp. b11
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10616338/
https://www.ncbi.nlm.nih.gov/pubmed/37916079
http://dx.doi.org/10.1016/j.heliyon.2023.e21006
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