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Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168

In this study, the Micrococcus luteus K-3 glutaminase was successfully over-expressed in the GRAS (Generally Recognized as Safe) Bacillus subtilis strain 168 by integration of the Mglu gene in the 16S rDNA locus. This was done in order to screen a strain producing high levels of recombinant glutamin...

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Autores principales: Zhang, Xian, Xu, Zhaoyang, Liu, Song, Qian, Kai, Xu, Meijuan, Yang, Taowei, Xu, Jianzhong, Rao, Zhiming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6384544/
https://www.ncbi.nlm.nih.gov/pubmed/30736411
http://dx.doi.org/10.3390/molecules24030592
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author Zhang, Xian
Xu, Zhaoyang
Liu, Song
Qian, Kai
Xu, Meijuan
Yang, Taowei
Xu, Jianzhong
Rao, Zhiming
author_facet Zhang, Xian
Xu, Zhaoyang
Liu, Song
Qian, Kai
Xu, Meijuan
Yang, Taowei
Xu, Jianzhong
Rao, Zhiming
author_sort Zhang, Xian
collection PubMed
description In this study, the Micrococcus luteus K-3 glutaminase was successfully over-expressed in the GRAS (Generally Recognized as Safe) Bacillus subtilis strain 168 by integration of the Mglu gene in the 16S rDNA locus. This was done in order to screen a strain producing high levels of recombinant glutaminase from the selected candidates. The transcription of the glutaminase genes in the B. subtilis 168 chromosome and the expression of glutaminase protein was further assessed by qPCR, SDS-PAGE analysis and an enzyme activity assay. To further increase the production of glutaminase, the nprB and nprE genes, which encode specific proteases, were disrupted by integration of the Mglu gene. After continuous cell culturing without the addition of antibiotics, the integrated recombinant strains showed excellent genetic stability, demonstrating favorable industrialization potential. After the fermentation temperature was optimized, a 5-L bioreactor was used for fed-batch fermentation of the recombinant glutaminase producing strain at 24 °C, and the highest enzyme activity achieved was approximately 357.6 U/mL.
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spelling pubmed-63845442019-02-23 Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168 Zhang, Xian Xu, Zhaoyang Liu, Song Qian, Kai Xu, Meijuan Yang, Taowei Xu, Jianzhong Rao, Zhiming Molecules Article In this study, the Micrococcus luteus K-3 glutaminase was successfully over-expressed in the GRAS (Generally Recognized as Safe) Bacillus subtilis strain 168 by integration of the Mglu gene in the 16S rDNA locus. This was done in order to screen a strain producing high levels of recombinant glutaminase from the selected candidates. The transcription of the glutaminase genes in the B. subtilis 168 chromosome and the expression of glutaminase protein was further assessed by qPCR, SDS-PAGE analysis and an enzyme activity assay. To further increase the production of glutaminase, the nprB and nprE genes, which encode specific proteases, were disrupted by integration of the Mglu gene. After continuous cell culturing without the addition of antibiotics, the integrated recombinant strains showed excellent genetic stability, demonstrating favorable industrialization potential. After the fermentation temperature was optimized, a 5-L bioreactor was used for fed-batch fermentation of the recombinant glutaminase producing strain at 24 °C, and the highest enzyme activity achieved was approximately 357.6 U/mL. MDPI 2019-02-07 /pmc/articles/PMC6384544/ /pubmed/30736411 http://dx.doi.org/10.3390/molecules24030592 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, Xian
Xu, Zhaoyang
Liu, Song
Qian, Kai
Xu, Meijuan
Yang, Taowei
Xu, Jianzhong
Rao, Zhiming
Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title_full Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title_fullStr Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title_full_unstemmed Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title_short Improving the Production of Salt-Tolerant Glutaminase by Integrating Multiple Copies of Mglu into the Protease and 16S rDNA Genes of Bacillus subtilis 168
title_sort improving the production of salt-tolerant glutaminase by integrating multiple copies of mglu into the protease and 16s rdna genes of bacillus subtilis 168
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6384544/
https://www.ncbi.nlm.nih.gov/pubmed/30736411
http://dx.doi.org/10.3390/molecules24030592
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