Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression

<p>Abstract</p> <p>Background</p> <p>Eukaryotic Ribonuclease inhibitor (RI), belonging to the RNH1 family, is distinguished by unique features - a high sensitivity to oxidation due to the large number of reduced cysteins and a high hydrophobicity, which made most produc...

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Main Authors: Neubauer Peter, Šiurkus Juozas
Format: Article
Language:English
Published: BMC 2011-08-01
Series:Microbial Cell Factories
Online Access:http://www.microbialcellfactories.com/content/10/1/65
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spelling doaj-e5d8bb16ff95451789e9ee251380b9ef2020-11-24T21:33:53ZengBMCMicrobial Cell Factories1475-28592011-08-011016510.1186/1475-2859-10-65Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpressionNeubauer PeterŠiurkus Juozas<p>Abstract</p> <p>Background</p> <p>Eukaryotic Ribonuclease inhibitor (RI), belonging to the RNH1 family, is distinguished by unique features - a high sensitivity to oxidation due to the large number of reduced cysteins and a high hydrophobicity, which made most production approaches so far unsuccessful or resulted in very low yields. In this work efficient <it>in vivo </it>folding of native RI in the <it>Escherichia coli </it>cytoplasm was obtained by external addition of a reducing agent in tandem with oxygen limitation and overproduction of a molecular chaperonin. After optimisation of the production conditions in the shake flask scale the process was scaled up to high cell densities by applying a glucose limited fed-batch procedure.</p> <p>Results</p> <p>RI production in a T7 RNA polymerase based system results in accumulation of aggregated inactive product in inclusion bodies. Combination of addition of the reductant DTT, low production temperature and coexpression of the chaperonin GroELS resulted in high level production of approximately 25 mg g<sup>-1 </sup>CDW active RI in <it>E. coli </it>ER2566 pET21b, corresponding to approximately 800 kU g<sup>-1 </sup>cell wet weight. Further conditional screening under fed-batch-like conditions with the EnBase<sup>® </sup>technology and scale up into the bioreactor scale resulted in an efficient high cell density glucose and oxygen limited fed-batch process with a final cell dry weight of 25 g L<sup>-1 </sup>and a total RI yield of app. 625 mg L<sup>-1 </sup>(volumetric activity of 80,000 kU L<sup>-1</sup>). The <it>E. coli </it>based production constructs showed a very high robustness. The recombinant culture maintained its productivity despite the combination of the toxic growth conditions, the substrate limited production mode in tandem with a high level expression of several recombinant proteins, the set of molecular chaperonins and the target protein (RI).</p> <p>Conclusions</p> <p>High level production of active RI in <it>E. coli </it>in a T7 RNA polymerase expression system depends on the following factors: (i) addition of a reducing agent, (ii) low production temperature, (iii) oxygen limitation, and (iii) co-overexpression of the chaperonin GroELS. The study indicates the strength of applying fed-batch cultivation techniques for the efficient optimisation of production factors already at the screening stage for fast and straight forward bioprocess development even for target proteins which show a complex folding behaviour. In our case none of the approaches alone would have resulted in significant accumulation of active RI.</p> http://www.microbialcellfactories.com/content/10/1/65
collection DOAJ
language English
format Article
sources DOAJ
author Neubauer Peter
Šiurkus Juozas
spellingShingle Neubauer Peter
Šiurkus Juozas
Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
Microbial Cell Factories
author_facet Neubauer Peter
Šiurkus Juozas
author_sort Neubauer Peter
title Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
title_short Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
title_full Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
title_fullStr Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
title_full_unstemmed Heterologous production of active ribonuclease inhibitor in <it>Escherichia coli </it>by redox state control and chaperonin coexpression
title_sort heterologous production of active ribonuclease inhibitor in <it>escherichia coli </it>by redox state control and chaperonin coexpression
publisher BMC
series Microbial Cell Factories
issn 1475-2859
publishDate 2011-08-01
description <p>Abstract</p> <p>Background</p> <p>Eukaryotic Ribonuclease inhibitor (RI), belonging to the RNH1 family, is distinguished by unique features - a high sensitivity to oxidation due to the large number of reduced cysteins and a high hydrophobicity, which made most production approaches so far unsuccessful or resulted in very low yields. In this work efficient <it>in vivo </it>folding of native RI in the <it>Escherichia coli </it>cytoplasm was obtained by external addition of a reducing agent in tandem with oxygen limitation and overproduction of a molecular chaperonin. After optimisation of the production conditions in the shake flask scale the process was scaled up to high cell densities by applying a glucose limited fed-batch procedure.</p> <p>Results</p> <p>RI production in a T7 RNA polymerase based system results in accumulation of aggregated inactive product in inclusion bodies. Combination of addition of the reductant DTT, low production temperature and coexpression of the chaperonin GroELS resulted in high level production of approximately 25 mg g<sup>-1 </sup>CDW active RI in <it>E. coli </it>ER2566 pET21b, corresponding to approximately 800 kU g<sup>-1 </sup>cell wet weight. Further conditional screening under fed-batch-like conditions with the EnBase<sup>® </sup>technology and scale up into the bioreactor scale resulted in an efficient high cell density glucose and oxygen limited fed-batch process with a final cell dry weight of 25 g L<sup>-1 </sup>and a total RI yield of app. 625 mg L<sup>-1 </sup>(volumetric activity of 80,000 kU L<sup>-1</sup>). The <it>E. coli </it>based production constructs showed a very high robustness. The recombinant culture maintained its productivity despite the combination of the toxic growth conditions, the substrate limited production mode in tandem with a high level expression of several recombinant proteins, the set of molecular chaperonins and the target protein (RI).</p> <p>Conclusions</p> <p>High level production of active RI in <it>E. coli </it>in a T7 RNA polymerase expression system depends on the following factors: (i) addition of a reducing agent, (ii) low production temperature, (iii) oxygen limitation, and (iii) co-overexpression of the chaperonin GroELS. The study indicates the strength of applying fed-batch cultivation techniques for the efficient optimisation of production factors already at the screening stage for fast and straight forward bioprocess development even for target proteins which show a complex folding behaviour. In our case none of the approaches alone would have resulted in significant accumulation of active RI.</p>
url http://www.microbialcellfactories.com/content/10/1/65
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AT siurkusjuozas heterologousproductionofactiveribonucleaseinhibitorinitescherichiacoliitbyredoxstatecontrolandchaperonincoexpression
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