Development of Versatile Vectors for Heterologous Expression in Bacillus

The discovery of new enzymes for industrial application relies on a robust discovery pipeline. Such a pipeline should facilitate efficient molecular cloning, recombinant expression and functional screening procedures. Previously, we have developed a vector set for heterologous expression in Escheric...

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Main Authors: Øivind Larsen, Gro Elin Kjæreng Bjerga
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Microorganisms
Subjects:
Online Access:http://www.mdpi.com/2076-2607/6/2/51
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spelling doaj-5dd19845cac84223800f9e50c286514f2020-11-25T01:41:03ZengMDPI AGMicroorganisms2076-26072018-06-01625110.3390/microorganisms6020051microorganisms6020051Development of Versatile Vectors for Heterologous Expression in BacillusØivind Larsen0Gro Elin Kjæreng Bjerga1Centre for Applied Biotechnology, Uni Research AS, Thormøhlens gt. 55, N-5006 Bergen, NorwayCentre for Applied Biotechnology, Uni Research AS, Thormøhlens gt. 55, N-5006 Bergen, NorwayThe discovery of new enzymes for industrial application relies on a robust discovery pipeline. Such a pipeline should facilitate efficient molecular cloning, recombinant expression and functional screening procedures. Previously, we have developed a vector set for heterologous expression in Escherichia coli. Here, we supplement the catalogue with vectors for expression in Bacillus. The vectors are made compatible with a versatile cloning procedure based on type IIS restriction enzymes and T4 DNA ligase, and encompass an effective counter-selection procedure and complement the set of vectors with options for secreted expression. We validate the system with expression of recombinant subtilisins, which are generally challenging to express in a heterologous system. The complementarity of the E. coli and Bacillus systems allows rapid switching between the two commonly used hosts without comprehensive intermediate cloning steps. The vectors described are not limited to the expression of certain enzymes, but could also be applied for the expression of other enzymes for more generalized enzyme discovery or development.http://www.mdpi.com/2076-2607/6/2/51cloningrecombinant DNA technologyccdBsubtilisinBacillus
collection DOAJ
language English
format Article
sources DOAJ
author Øivind Larsen
Gro Elin Kjæreng Bjerga
spellingShingle Øivind Larsen
Gro Elin Kjæreng Bjerga
Development of Versatile Vectors for Heterologous Expression in Bacillus
Microorganisms
cloning
recombinant DNA technology
ccdB
subtilisin
Bacillus
author_facet Øivind Larsen
Gro Elin Kjæreng Bjerga
author_sort Øivind Larsen
title Development of Versatile Vectors for Heterologous Expression in Bacillus
title_short Development of Versatile Vectors for Heterologous Expression in Bacillus
title_full Development of Versatile Vectors for Heterologous Expression in Bacillus
title_fullStr Development of Versatile Vectors for Heterologous Expression in Bacillus
title_full_unstemmed Development of Versatile Vectors for Heterologous Expression in Bacillus
title_sort development of versatile vectors for heterologous expression in bacillus
publisher MDPI AG
series Microorganisms
issn 2076-2607
publishDate 2018-06-01
description The discovery of new enzymes for industrial application relies on a robust discovery pipeline. Such a pipeline should facilitate efficient molecular cloning, recombinant expression and functional screening procedures. Previously, we have developed a vector set for heterologous expression in Escherichia coli. Here, we supplement the catalogue with vectors for expression in Bacillus. The vectors are made compatible with a versatile cloning procedure based on type IIS restriction enzymes and T4 DNA ligase, and encompass an effective counter-selection procedure and complement the set of vectors with options for secreted expression. We validate the system with expression of recombinant subtilisins, which are generally challenging to express in a heterologous system. The complementarity of the E. coli and Bacillus systems allows rapid switching between the two commonly used hosts without comprehensive intermediate cloning steps. The vectors described are not limited to the expression of certain enzymes, but could also be applied for the expression of other enzymes for more generalized enzyme discovery or development.
topic cloning
recombinant DNA technology
ccdB
subtilisin
Bacillus
url http://www.mdpi.com/2076-2607/6/2/51
work_keys_str_mv AT øivindlarsen developmentofversatilevectorsforheterologousexpressioninbacillus
AT groelinkjærengbjerga developmentofversatilevectorsforheterologousexpressioninbacillus
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