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Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis

α-Galactosidase (EC 3.2.1.22) refers to a group of enzymes that hydrolyze oligosaccharides containing α-galactoside-banded glycosides, such as stachyose, raffinose, and verbascose. These enzymes also possess great potential for application in sugar production, and in the feed and pharmaceutical indu...

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Autores principales: Zhao, Yan, Zhou, Jinghui, Dai, Shan, Liu, Xiaozhu, Zhang, Xuewen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502112/
https://www.ncbi.nlm.nih.gov/pubmed/36144675
http://dx.doi.org/10.3390/molecules27185942
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author Zhao, Yan
Zhou, Jinghui
Dai, Shan
Liu, Xiaozhu
Zhang, Xuewen
author_facet Zhao, Yan
Zhou, Jinghui
Dai, Shan
Liu, Xiaozhu
Zhang, Xuewen
author_sort Zhao, Yan
collection PubMed
description α-Galactosidase (EC 3.2.1.22) refers to a group of enzymes that hydrolyze oligosaccharides containing α-galactoside-banded glycosides, such as stachyose, raffinose, and verbascose. These enzymes also possess great potential for application in sugar production, and in the feed and pharmaceutical industries. In this study, a strain of Lactosphaera pasteurii (WHPC005) that produces α-galactosidase was identified from the soil of Western Hunan, China. It was determined that the optimal temperature and pH for this α-galactosidase were 45 °C and 5.5, respectively. The activity of α-galactosidase was inhibited by K(+), Al(3+), Fe(3+), fructose, sucrose, lactose, galactose, SDS, EDTA, NaCl, and (NH(4))(2)SO(4), and enhanced by Ca(2+), Fe(2+), Mn(2), Zn(2+), glucose, and raffinose. The optimal inducer was raffinose, and the optimal induction concentration was 30 μmol/L. The α-galactosidase gene was cloned using random fragment cloning methods. Sequence analysis demonstrated that the open reading frame of the α-galactosidase gene was 1230 bp, which encodes a putative protein of 409 amino acids in length. Bioinformatics analysis showed that the isoelectric point and molecular weight of this α-galactosidase were 4.84 and 47.40 kD, respectively. Random coils, alpha helixes, and beta turns were observed in its secondary structure, and conserved regions were found in the tertiary structure of this α-galactosidase. Therefore, this α-galactosidase-producing bacterial strain has the potential for application in the feed industry.
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spelling pubmed-95021122022-09-24 Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis Zhao, Yan Zhou, Jinghui Dai, Shan Liu, Xiaozhu Zhang, Xuewen Molecules Article α-Galactosidase (EC 3.2.1.22) refers to a group of enzymes that hydrolyze oligosaccharides containing α-galactoside-banded glycosides, such as stachyose, raffinose, and verbascose. These enzymes also possess great potential for application in sugar production, and in the feed and pharmaceutical industries. In this study, a strain of Lactosphaera pasteurii (WHPC005) that produces α-galactosidase was identified from the soil of Western Hunan, China. It was determined that the optimal temperature and pH for this α-galactosidase were 45 °C and 5.5, respectively. The activity of α-galactosidase was inhibited by K(+), Al(3+), Fe(3+), fructose, sucrose, lactose, galactose, SDS, EDTA, NaCl, and (NH(4))(2)SO(4), and enhanced by Ca(2+), Fe(2+), Mn(2), Zn(2+), glucose, and raffinose. The optimal inducer was raffinose, and the optimal induction concentration was 30 μmol/L. The α-galactosidase gene was cloned using random fragment cloning methods. Sequence analysis demonstrated that the open reading frame of the α-galactosidase gene was 1230 bp, which encodes a putative protein of 409 amino acids in length. Bioinformatics analysis showed that the isoelectric point and molecular weight of this α-galactosidase were 4.84 and 47.40 kD, respectively. Random coils, alpha helixes, and beta turns were observed in its secondary structure, and conserved regions were found in the tertiary structure of this α-galactosidase. Therefore, this α-galactosidase-producing bacterial strain has the potential for application in the feed industry. MDPI 2022-09-13 /pmc/articles/PMC9502112/ /pubmed/36144675 http://dx.doi.org/10.3390/molecules27185942 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
Zhao, Yan
Zhou, Jinghui
Dai, Shan
Liu, Xiaozhu
Zhang, Xuewen
Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title_full Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title_fullStr Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title_full_unstemmed Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title_short Isolation and Identification of an α-Galactosidase-Producing Lactosphaera pasteurii Strain and Its Enzymatic Expression Analysis
title_sort isolation and identification of an α-galactosidase-producing lactosphaera pasteurii strain and its enzymatic expression analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9502112/
https://www.ncbi.nlm.nih.gov/pubmed/36144675
http://dx.doi.org/10.3390/molecules27185942
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