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Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase

Fatty acid ethyl esters are important flavor chemicals in strong-flavor Baijiu. Monascus purpureus YJX-8 is recognized as an important microorganism for ester synthesis in the fermentation process. Enzyme LIP05 from YJX-8 can efficiently catalyze the synthesis of fatty acid ethyl esters under aqueou...

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Autores principales: Zhao, Jingrong, Xu, Youqiang, Lu, Hongyun, Zhao, Dong, Zheng, Jia, Lin, Mengwei, Liang, Xin, Ding, Ze, Dong, Wenqi, Yang, Maochen, Li, Weiwei, Zhang, Chengnan, Sun, Baoguo, Li, Xiuting
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9877431/
https://www.ncbi.nlm.nih.gov/pubmed/36713181
http://dx.doi.org/10.3389/fmicb.2022.1107104
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author Zhao, Jingrong
Xu, Youqiang
Lu, Hongyun
Zhao, Dong
Zheng, Jia
Lin, Mengwei
Liang, Xin
Ding, Ze
Dong, Wenqi
Yang, Maochen
Li, Weiwei
Zhang, Chengnan
Sun, Baoguo
Li, Xiuting
author_facet Zhao, Jingrong
Xu, Youqiang
Lu, Hongyun
Zhao, Dong
Zheng, Jia
Lin, Mengwei
Liang, Xin
Ding, Ze
Dong, Wenqi
Yang, Maochen
Li, Weiwei
Zhang, Chengnan
Sun, Baoguo
Li, Xiuting
author_sort Zhao, Jingrong
collection PubMed
description Fatty acid ethyl esters are important flavor chemicals in strong-flavor Baijiu. Monascus purpureus YJX-8 is recognized as an important microorganism for ester synthesis in the fermentation process. Enzyme LIP05 from YJX-8 can efficiently catalyze the synthesis of fatty acid ethyl esters under aqueous phase, but the key catalytic sites affecting esterification were unclear. The present work combined homology modeling, molecular dynamics simulation, molecular docking and site-directed mutation to analyze the catalytic mechanism of LIP05. Protein structure modeling indicated LIP05 belonged to α/β fold hydrolase, contained a lid domain and a core catalytic pocket with conserved catalytic triad Ser150-His215-Asp202, and the oxyanion hole composed of Gly73 and Thr74. Ile30 and Leu37 of the lid domain were found to affect substrate specificity. The π-bond stacking between Tyr116 and Tyr149 played an important role in stabilizing the catalytic active center of LIP05. Tyr116 and Ile204 determined the substrate spectrum by composing the substrate-entrance channel. Residues Leu83, Ile204, Ile211 and Leu216 were involved in forming the hydrophobic substrate-binding pocket through steric hindrance and hydrophobic interaction. The catalytic mechanism for esterification in aqueous phase of LIP05 was proposed and provided a reference for clarifying the synthesis of fatty acid ethyl esters during the fermentation process of strong-flavor Baijiu.
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spelling pubmed-98774312023-01-27 Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase Zhao, Jingrong Xu, Youqiang Lu, Hongyun Zhao, Dong Zheng, Jia Lin, Mengwei Liang, Xin Ding, Ze Dong, Wenqi Yang, Maochen Li, Weiwei Zhang, Chengnan Sun, Baoguo Li, Xiuting Front Microbiol Microbiology Fatty acid ethyl esters are important flavor chemicals in strong-flavor Baijiu. Monascus purpureus YJX-8 is recognized as an important microorganism for ester synthesis in the fermentation process. Enzyme LIP05 from YJX-8 can efficiently catalyze the synthesis of fatty acid ethyl esters under aqueous phase, but the key catalytic sites affecting esterification were unclear. The present work combined homology modeling, molecular dynamics simulation, molecular docking and site-directed mutation to analyze the catalytic mechanism of LIP05. Protein structure modeling indicated LIP05 belonged to α/β fold hydrolase, contained a lid domain and a core catalytic pocket with conserved catalytic triad Ser150-His215-Asp202, and the oxyanion hole composed of Gly73 and Thr74. Ile30 and Leu37 of the lid domain were found to affect substrate specificity. The π-bond stacking between Tyr116 and Tyr149 played an important role in stabilizing the catalytic active center of LIP05. Tyr116 and Ile204 determined the substrate spectrum by composing the substrate-entrance channel. Residues Leu83, Ile204, Ile211 and Leu216 were involved in forming the hydrophobic substrate-binding pocket through steric hindrance and hydrophobic interaction. The catalytic mechanism for esterification in aqueous phase of LIP05 was proposed and provided a reference for clarifying the synthesis of fatty acid ethyl esters during the fermentation process of strong-flavor Baijiu. Frontiers Media S.A. 2023-01-12 /pmc/articles/PMC9877431/ /pubmed/36713181 http://dx.doi.org/10.3389/fmicb.2022.1107104 Text en Copyright © 2023 Zhao, Xu, Lu, Zhao, Zheng, Lin, Liang, Ding, Dong, Yang, Li, Zhang, Sun and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Zhao, Jingrong
Xu, Youqiang
Lu, Hongyun
Zhao, Dong
Zheng, Jia
Lin, Mengwei
Liang, Xin
Ding, Ze
Dong, Wenqi
Yang, Maochen
Li, Weiwei
Zhang, Chengnan
Sun, Baoguo
Li, Xiuting
Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title_full Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title_fullStr Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title_full_unstemmed Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title_short Molecular mechanism of LIP05 derived from Monascus purpureus YJX-8 for synthesizing fatty acid ethyl esters under aqueous phase
title_sort molecular mechanism of lip05 derived from monascus purpureus yjx-8 for synthesizing fatty acid ethyl esters under aqueous phase
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9877431/
https://www.ncbi.nlm.nih.gov/pubmed/36713181
http://dx.doi.org/10.3389/fmicb.2022.1107104
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