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The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production

D-allulose is a natural rare sugar with important physiological properties that is used in food, health care items, and even the pharmaceutical industry. In the current study, a novel D-allulose 3-epimerase gene (Bp-DAE) from the probiotic strain Blautia produca was discovered for the production and...

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Autores principales: Tang, Xinrui, An, Yingfeng, Iqbal, Muhammad Waheed, Cong, Hongri, Zhang, Guoyan, Zhang, Yufei, Ravikumar, Yuvaraj, Zabed, Hossain M., Zhao, Mei, Zhou, Haixing, Qi, Xianghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601914/
https://www.ncbi.nlm.nih.gov/pubmed/37430974
http://dx.doi.org/10.3390/foods11203225
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author Tang, Xinrui
An, Yingfeng
Iqbal, Muhammad Waheed
Cong, Hongri
Zhang, Guoyan
Zhang, Yufei
Ravikumar, Yuvaraj
Zabed, Hossain M.
Zhao, Mei
Zhou, Haixing
Qi, Xianghui
author_facet Tang, Xinrui
An, Yingfeng
Iqbal, Muhammad Waheed
Cong, Hongri
Zhang, Guoyan
Zhang, Yufei
Ravikumar, Yuvaraj
Zabed, Hossain M.
Zhao, Mei
Zhou, Haixing
Qi, Xianghui
author_sort Tang, Xinrui
collection PubMed
description D-allulose is a natural rare sugar with important physiological properties that is used in food, health care items, and even the pharmaceutical industry. In the current study, a novel D-allulose 3-epimerase gene (Bp-DAE) from the probiotic strain Blautia produca was discovered for the production and characterization of an enzyme known as Bp-DAE that can epimerize D-fructose into D-allulose. Bp-DAE was strictly dependent on metals (Mn(2+) and Co(2+)), and the addition of 1 mM of Mn(2+) could enhance the half-life of Bp-DAE at 55 °C from 60 to 180 min. It exhibited optimal activity in a pH of 8 and 55 °C, and the K(m) values of Bp-DAE for the different substrates D-fructose and D-allulose were 235.7 and 150.7 mM, respectively. Bp-DAE was used for the transformation from 500 g/L D-fructose to 150 g/L D-allulose and exhibited a 30% of conversion yield during biotransformation. Furthermore, it was possible to employ the food-grade microbial species Bacillus subtilis for the production of D-allulose using a technique of whole-cell catalysis to circumvent the laborious process of enzyme purification and to obtain a more stable biocatalyst. This method also yields a 30% conversion yield.
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spelling pubmed-96019142022-10-27 The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production Tang, Xinrui An, Yingfeng Iqbal, Muhammad Waheed Cong, Hongri Zhang, Guoyan Zhang, Yufei Ravikumar, Yuvaraj Zabed, Hossain M. Zhao, Mei Zhou, Haixing Qi, Xianghui Foods Article D-allulose is a natural rare sugar with important physiological properties that is used in food, health care items, and even the pharmaceutical industry. In the current study, a novel D-allulose 3-epimerase gene (Bp-DAE) from the probiotic strain Blautia produca was discovered for the production and characterization of an enzyme known as Bp-DAE that can epimerize D-fructose into D-allulose. Bp-DAE was strictly dependent on metals (Mn(2+) and Co(2+)), and the addition of 1 mM of Mn(2+) could enhance the half-life of Bp-DAE at 55 °C from 60 to 180 min. It exhibited optimal activity in a pH of 8 and 55 °C, and the K(m) values of Bp-DAE for the different substrates D-fructose and D-allulose were 235.7 and 150.7 mM, respectively. Bp-DAE was used for the transformation from 500 g/L D-fructose to 150 g/L D-allulose and exhibited a 30% of conversion yield during biotransformation. Furthermore, it was possible to employ the food-grade microbial species Bacillus subtilis for the production of D-allulose using a technique of whole-cell catalysis to circumvent the laborious process of enzyme purification and to obtain a more stable biocatalyst. This method also yields a 30% conversion yield. MDPI 2022-10-15 /pmc/articles/PMC9601914/ /pubmed/37430974 http://dx.doi.org/10.3390/foods11203225 Text en © 2022 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
Tang, Xinrui
An, Yingfeng
Iqbal, Muhammad Waheed
Cong, Hongri
Zhang, Guoyan
Zhang, Yufei
Ravikumar, Yuvaraj
Zabed, Hossain M.
Zhao, Mei
Zhou, Haixing
Qi, Xianghui
The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title_full The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title_fullStr The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title_full_unstemmed The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title_short The Characterization of a Novel D-allulose 3-Epimerase from Blautia produca and Its Application in D-allulose Production
title_sort characterization of a novel d-allulose 3-epimerase from blautia produca and its application in d-allulose production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9601914/
https://www.ncbi.nlm.nih.gov/pubmed/37430974
http://dx.doi.org/10.3390/foods11203225
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