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Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions

Plasmid-based gene expression is a fundamental tool in the field of biotechnology. However, overexpression of genes of interest with multi-copy plasmids often causes detrimental effects on host cells. To overcome this problem, chromosomal integration of target genes has been used for decades; howeve...

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Autores principales: Yeom, Soo-Jin, Kim, Yu Jung, Lee, Jeongmin, Kwon, Kil Koang, Han, Gui Hwan, Kim, Haseong, Lee, Dae-Hee, Kim, Hak-Sung, Lee, Seung-Goo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5132264/
https://www.ncbi.nlm.nih.gov/pubmed/27907029
http://dx.doi.org/10.1371/journal.pone.0166890
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author Yeom, Soo-Jin
Kim, Yu Jung
Lee, Jeongmin
Kwon, Kil Koang
Han, Gui Hwan
Kim, Haseong
Lee, Dae-Hee
Kim, Hak-Sung
Lee, Seung-Goo
author_facet Yeom, Soo-Jin
Kim, Yu Jung
Lee, Jeongmin
Kwon, Kil Koang
Han, Gui Hwan
Kim, Haseong
Lee, Dae-Hee
Kim, Hak-Sung
Lee, Seung-Goo
author_sort Yeom, Soo-Jin
collection PubMed
description Plasmid-based gene expression is a fundamental tool in the field of biotechnology. However, overexpression of genes of interest with multi-copy plasmids often causes detrimental effects on host cells. To overcome this problem, chromosomal integration of target genes has been used for decades; however, insufficient protein expression occurred with this method. In this study, we developed a novel cloning and expression system named the chromosomal vector (ChroV) system, that has features of stable and high expression of target genes on the F′ plasmid in the Escherichia coli JM109(DE3) strain. We used an RMT cluster (KCTC 11994BP) containing a silent cat gene from a previous study to clone a gene into the F′ plasmid. The ChroV system was applied to clone two model targets, GFPuv and carotenoids gene clusters (4 kb), and successfully used to prove the inducible tightly regulated protein expression in the F′ plasmid. In addition, we verified that the expression of heterologous genes in ChroV system maintained stably in the absence of antibiotics for 1 week, indicating ChroV system is applicable to antibiotics-free production of valuable proteins. This protocol can be widely applied to recombinant protein expression for antibiotics-free, stable, and genome-based expression, providing a new platform for recombinant protein synthesis in E. coli. Overall, our approach can be widely used for the economical and industrial production of proteins in E. coli.
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spelling pubmed-51322642016-12-21 Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions Yeom, Soo-Jin Kim, Yu Jung Lee, Jeongmin Kwon, Kil Koang Han, Gui Hwan Kim, Haseong Lee, Dae-Hee Kim, Hak-Sung Lee, Seung-Goo PLoS One Research Article Plasmid-based gene expression is a fundamental tool in the field of biotechnology. However, overexpression of genes of interest with multi-copy plasmids often causes detrimental effects on host cells. To overcome this problem, chromosomal integration of target genes has been used for decades; however, insufficient protein expression occurred with this method. In this study, we developed a novel cloning and expression system named the chromosomal vector (ChroV) system, that has features of stable and high expression of target genes on the F′ plasmid in the Escherichia coli JM109(DE3) strain. We used an RMT cluster (KCTC 11994BP) containing a silent cat gene from a previous study to clone a gene into the F′ plasmid. The ChroV system was applied to clone two model targets, GFPuv and carotenoids gene clusters (4 kb), and successfully used to prove the inducible tightly regulated protein expression in the F′ plasmid. In addition, we verified that the expression of heterologous genes in ChroV system maintained stably in the absence of antibiotics for 1 week, indicating ChroV system is applicable to antibiotics-free production of valuable proteins. This protocol can be widely applied to recombinant protein expression for antibiotics-free, stable, and genome-based expression, providing a new platform for recombinant protein synthesis in E. coli. Overall, our approach can be widely used for the economical and industrial production of proteins in E. coli. Public Library of Science 2016-12-01 /pmc/articles/PMC5132264/ /pubmed/27907029 http://dx.doi.org/10.1371/journal.pone.0166890 Text en © 2016 Yeom et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Yeom, Soo-Jin
Kim, Yu Jung
Lee, Jeongmin
Kwon, Kil Koang
Han, Gui Hwan
Kim, Haseong
Lee, Dae-Hee
Kim, Hak-Sung
Lee, Seung-Goo
Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title_full Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title_fullStr Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title_full_unstemmed Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title_short Long-Term Stable and Tightly Controlled Expression of Recombinant Proteins in Antibiotics-Free Conditions
title_sort long-term stable and tightly controlled expression of recombinant proteins in antibiotics-free conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5132264/
https://www.ncbi.nlm.nih.gov/pubmed/27907029
http://dx.doi.org/10.1371/journal.pone.0166890
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