Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.

Bacteria can be considered as biological nanofactories that manufacture a cornucopia of bioproducts most notably recombinant proteins. As such, they must perfectly match with appropriate plasmid vectors to ensure successful overexpression of target genes. Among many parameters that correlate positiv...

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Main Authors: Magdalena Plotka, Mateusz Wozniak, Tadeusz Kaczorowski
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5234771?pdf=render
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spelling doaj-a08c8460132e478fa44001e08ed0c97b2020-11-24T22:21:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01121e016984610.1371/journal.pone.0169846Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.Magdalena PlotkaMateusz WozniakTadeusz KaczorowskiBacteria can be considered as biological nanofactories that manufacture a cornucopia of bioproducts most notably recombinant proteins. As such, they must perfectly match with appropriate plasmid vectors to ensure successful overexpression of target genes. Among many parameters that correlate positively with protein productivity plasmid copy number plays pivotal role. Therefore, development of new and more accurate methods to assess this critical parameter will result in optimization of expression of plasmid-encoded genes. In this study, we present a simple and highly accurate method for quantifying plasmid copy number utilizing an EvaGreen single colour, droplet digital PCR. We demonstrate the effectiveness of this method by examining the copy number of the pBR322 vector within Escherichia coli DH5α cells. The obtained results were successfully validated by real-time PCR. However, we observed a strong dependency of the plasmid copy number on the method chosen for isolation of the total DNA. We found that application of silica-membrane-based columns for DNA purification or DNA isolation with use of bead-beating, a mechanical cell disruption lead to determination of an average of 20.5 or 7.3 plasmid copies per chromosome, respectively. We found that recovery of the chromosomal DNA from purification columns was less efficient than plasmid DNA (46.5 ± 1.9% and 87.4 ± 5.5%, respectively) which may lead to observed differences in plasmid copy number. Besides, the plasmid copy number variations dependent on DNA template isolation method, we found that droplet digital PCR is a very convenient method for measuring bacterial plasmid content. Careful determination of plasmid copy number is essential for better understanding and optimization of recombinant proteins production process. Droplet digital PCR is a very precise method that allows performing thousands of individual PCR reactions in a single tube. The ddPCR does not depend on running standard curves and is a straightforward and reliable method to quantify the plasmid copy number. Therefore we believe that the ddPCR designed in this study will be widely used for any plasmid copy number calculation in the future.http://europepmc.org/articles/PMC5234771?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Magdalena Plotka
Mateusz Wozniak
Tadeusz Kaczorowski
spellingShingle Magdalena Plotka
Mateusz Wozniak
Tadeusz Kaczorowski
Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
PLoS ONE
author_facet Magdalena Plotka
Mateusz Wozniak
Tadeusz Kaczorowski
author_sort Magdalena Plotka
title Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
title_short Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
title_full Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
title_fullStr Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
title_full_unstemmed Quantification of Plasmid Copy Number with Single Colour Droplet Digital PCR.
title_sort quantification of plasmid copy number with single colour droplet digital pcr.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Bacteria can be considered as biological nanofactories that manufacture a cornucopia of bioproducts most notably recombinant proteins. As such, they must perfectly match with appropriate plasmid vectors to ensure successful overexpression of target genes. Among many parameters that correlate positively with protein productivity plasmid copy number plays pivotal role. Therefore, development of new and more accurate methods to assess this critical parameter will result in optimization of expression of plasmid-encoded genes. In this study, we present a simple and highly accurate method for quantifying plasmid copy number utilizing an EvaGreen single colour, droplet digital PCR. We demonstrate the effectiveness of this method by examining the copy number of the pBR322 vector within Escherichia coli DH5α cells. The obtained results were successfully validated by real-time PCR. However, we observed a strong dependency of the plasmid copy number on the method chosen for isolation of the total DNA. We found that application of silica-membrane-based columns for DNA purification or DNA isolation with use of bead-beating, a mechanical cell disruption lead to determination of an average of 20.5 or 7.3 plasmid copies per chromosome, respectively. We found that recovery of the chromosomal DNA from purification columns was less efficient than plasmid DNA (46.5 ± 1.9% and 87.4 ± 5.5%, respectively) which may lead to observed differences in plasmid copy number. Besides, the plasmid copy number variations dependent on DNA template isolation method, we found that droplet digital PCR is a very convenient method for measuring bacterial plasmid content. Careful determination of plasmid copy number is essential for better understanding and optimization of recombinant proteins production process. Droplet digital PCR is a very precise method that allows performing thousands of individual PCR reactions in a single tube. The ddPCR does not depend on running standard curves and is a straightforward and reliable method to quantify the plasmid copy number. Therefore we believe that the ddPCR designed in this study will be widely used for any plasmid copy number calculation in the future.
url http://europepmc.org/articles/PMC5234771?pdf=render
work_keys_str_mv AT magdalenaplotka quantificationofplasmidcopynumberwithsinglecolourdropletdigitalpcr
AT mateuszwozniak quantificationofplasmidcopynumberwithsinglecolourdropletdigitalpcr
AT tadeuszkaczorowski quantificationofplasmidcopynumberwithsinglecolourdropletdigitalpcr
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