Cargando…

Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis

Isomaltose–oligosaccharides (IMOs), as food ingredients with prebiotic functionality, can be prepared via enzymatic synthesis using α-glucosidase. In the present study, the α-glucosidase (GSJ) from Geobacillus sp. strain HTA-462 was cloned and expressed in Escherichia coli BL21 (DE3). Recombinant GS...

Descripción completa

Detalles Bibliográficos
Autores principales: Zhang, Fan, Wang, Weiyang, Bah, Fatoumata Binta Maci, Song, Chengcheng, Zhou, Yifa, Ji, Li, Yuan, Ye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479687/
https://www.ncbi.nlm.nih.gov/pubmed/30974879
http://dx.doi.org/10.3390/molecules24071413
_version_ 1783413402609123328
author Zhang, Fan
Wang, Weiyang
Bah, Fatoumata Binta Maci
Song, Chengcheng
Zhou, Yifa
Ji, Li
Yuan, Ye
author_facet Zhang, Fan
Wang, Weiyang
Bah, Fatoumata Binta Maci
Song, Chengcheng
Zhou, Yifa
Ji, Li
Yuan, Ye
author_sort Zhang, Fan
collection PubMed
description Isomaltose–oligosaccharides (IMOs), as food ingredients with prebiotic functionality, can be prepared via enzymatic synthesis using α-glucosidase. In the present study, the α-glucosidase (GSJ) from Geobacillus sp. strain HTA-462 was cloned and expressed in Escherichia coli BL21 (DE3). Recombinant GSJ was purified and biochemically characterized. The optimum temperature condition of the recombinant enzyme was 65 °C, and the half-life was 84 h at 60 °C, whereas the enzyme was active over the range of pH 6.0–10.0 with maximal activity at pH 7.0. The α-glucosidase activity in shake flasks reached 107.9 U/mL and using 4-Nitrophenyl β-D-glucopyranoside (pNPG) as substrate, the K(m) and Vmax values were 2.321 mM and 306.3 U/mg, respectively. The divalent ions Mn(2+) and Ca(2+) could improve GSJ activity by 32.1% and 13.8%. Moreover, the hydrolysis ability of recombinant α-glucosidase was almost the same as that of the commercial α-glucosidase (Bacillus stearothermophilus). In terms of the transglycosylation reaction, with 30% maltose syrup under the condition of 60 °C and pH 7.0, IMOs were synthesized with a conversion rate of 37%. These studies lay the basis for the industrial application of recombinant α-glucosidase.
format Online
Article
Text
id pubmed-6479687
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-64796872019-04-30 Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis Zhang, Fan Wang, Weiyang Bah, Fatoumata Binta Maci Song, Chengcheng Zhou, Yifa Ji, Li Yuan, Ye Molecules Article Isomaltose–oligosaccharides (IMOs), as food ingredients with prebiotic functionality, can be prepared via enzymatic synthesis using α-glucosidase. In the present study, the α-glucosidase (GSJ) from Geobacillus sp. strain HTA-462 was cloned and expressed in Escherichia coli BL21 (DE3). Recombinant GSJ was purified and biochemically characterized. The optimum temperature condition of the recombinant enzyme was 65 °C, and the half-life was 84 h at 60 °C, whereas the enzyme was active over the range of pH 6.0–10.0 with maximal activity at pH 7.0. The α-glucosidase activity in shake flasks reached 107.9 U/mL and using 4-Nitrophenyl β-D-glucopyranoside (pNPG) as substrate, the K(m) and Vmax values were 2.321 mM and 306.3 U/mg, respectively. The divalent ions Mn(2+) and Ca(2+) could improve GSJ activity by 32.1% and 13.8%. Moreover, the hydrolysis ability of recombinant α-glucosidase was almost the same as that of the commercial α-glucosidase (Bacillus stearothermophilus). In terms of the transglycosylation reaction, with 30% maltose syrup under the condition of 60 °C and pH 7.0, IMOs were synthesized with a conversion rate of 37%. These studies lay the basis for the industrial application of recombinant α-glucosidase. MDPI 2019-04-10 /pmc/articles/PMC6479687/ /pubmed/30974879 http://dx.doi.org/10.3390/molecules24071413 Text en © 2019 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
Zhang, Fan
Wang, Weiyang
Bah, Fatoumata Binta Maci
Song, Chengcheng
Zhou, Yifa
Ji, Li
Yuan, Ye
Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title_full Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title_fullStr Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title_full_unstemmed Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title_short Heterologous Expression of a Thermostable α-Glucosidase from Geobacillus sp. Strain HTA-462 by Escherichia coli and Its Potential Application for Isomaltose–Oligosaccharide Synthesis
title_sort heterologous expression of a thermostable α-glucosidase from geobacillus sp. strain hta-462 by escherichia coli and its potential application for isomaltose–oligosaccharide synthesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6479687/
https://www.ncbi.nlm.nih.gov/pubmed/30974879
http://dx.doi.org/10.3390/molecules24071413
work_keys_str_mv AT zhangfan heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT wangweiyang heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT bahfatoumatabintamaci heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT songchengcheng heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT zhouyifa heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT jili heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis
AT yuanye heterologousexpressionofathermostableaglucosidasefromgeobacillusspstrainhta462byescherichiacolianditspotentialapplicationforisomaltoseoligosaccharidesynthesis