Cargando…
A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d
Yeasts provide attractive host/vector systems for heterologous gene expression. The currently used yeast-based expression platforms include mesophilic and thermotolerant species. A eukaryotic expression system working at low temperatures could be particularly useful for the production of thermolabil...
Autores principales: | , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569826/ https://www.ncbi.nlm.nih.gov/pubmed/36232994 http://dx.doi.org/10.3390/ijms231911691 |
_version_ | 1784809951511707648 |
---|---|
author | Wanarska, Marta Krajewska-Przybyszewska, Ewelina Wicka-Grochocka, Monika Cieśliński, Hubert Pawlak-Szukalska, Anna Białkowska, Aneta M. Turkiewicz, Marianna Florczak, Tomasz Gromek, Ewa Krysiak, Joanna Filipowicz, Natalia |
author_facet | Wanarska, Marta Krajewska-Przybyszewska, Ewelina Wicka-Grochocka, Monika Cieśliński, Hubert Pawlak-Szukalska, Anna Białkowska, Aneta M. Turkiewicz, Marianna Florczak, Tomasz Gromek, Ewa Krysiak, Joanna Filipowicz, Natalia |
author_sort | Wanarska, Marta |
collection | PubMed |
description | Yeasts provide attractive host/vector systems for heterologous gene expression. The currently used yeast-based expression platforms include mesophilic and thermotolerant species. A eukaryotic expression system working at low temperatures could be particularly useful for the production of thermolabile proteins and proteins that tend to form insoluble aggregates. For this purpose, an expression system based on an Antarctic psychrotolerant yeast Debaryomyces macquariensis strain D50 that is capable of growing at temperatures ranging from 0 to 30 °C has been developed. The optimal physical culture conditions for D. macquariensis D50 in a fermenter are as follows: temperature 20 °C, pH 5.5, aeration rate of 1.5 vvm, and a stirring speed of 300 rpm. Four integrative plasmid vectors equipped with an expression cassette containing the constitutive GAP promoter and CYC1 transcriptional terminator from D. macquariensis D50 were constructed and used to clone and express a gene-encoding cold-active β-d-galactosidase of Paracoccus sp. 32d. The yield was 1150 U/L of recombinant yeast culture. Recombinant D. macquariensis D50 strains were mitotically stable under both selective and non-selective conditions. The D. macquariensis D50 host/vector system has been successfully utilized for the synthesis of heterologous thermolabile protein, and it can be an alternative to other microbial expression systems. |
format | Online Article Text |
id | pubmed-9569826 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-95698262022-10-17 A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d Wanarska, Marta Krajewska-Przybyszewska, Ewelina Wicka-Grochocka, Monika Cieśliński, Hubert Pawlak-Szukalska, Anna Białkowska, Aneta M. Turkiewicz, Marianna Florczak, Tomasz Gromek, Ewa Krysiak, Joanna Filipowicz, Natalia Int J Mol Sci Article Yeasts provide attractive host/vector systems for heterologous gene expression. The currently used yeast-based expression platforms include mesophilic and thermotolerant species. A eukaryotic expression system working at low temperatures could be particularly useful for the production of thermolabile proteins and proteins that tend to form insoluble aggregates. For this purpose, an expression system based on an Antarctic psychrotolerant yeast Debaryomyces macquariensis strain D50 that is capable of growing at temperatures ranging from 0 to 30 °C has been developed. The optimal physical culture conditions for D. macquariensis D50 in a fermenter are as follows: temperature 20 °C, pH 5.5, aeration rate of 1.5 vvm, and a stirring speed of 300 rpm. Four integrative plasmid vectors equipped with an expression cassette containing the constitutive GAP promoter and CYC1 transcriptional terminator from D. macquariensis D50 were constructed and used to clone and express a gene-encoding cold-active β-d-galactosidase of Paracoccus sp. 32d. The yield was 1150 U/L of recombinant yeast culture. Recombinant D. macquariensis D50 strains were mitotically stable under both selective and non-selective conditions. The D. macquariensis D50 host/vector system has been successfully utilized for the synthesis of heterologous thermolabile protein, and it can be an alternative to other microbial expression systems. MDPI 2022-10-02 /pmc/articles/PMC9569826/ /pubmed/36232994 http://dx.doi.org/10.3390/ijms231911691 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Wanarska, Marta Krajewska-Przybyszewska, Ewelina Wicka-Grochocka, Monika Cieśliński, Hubert Pawlak-Szukalska, Anna Białkowska, Aneta M. Turkiewicz, Marianna Florczak, Tomasz Gromek, Ewa Krysiak, Joanna Filipowicz, Natalia A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title | A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title_full | A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title_fullStr | A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title_full_unstemmed | A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title_short | A New Expression System Based on Psychrotolerant Debaryomyces macquariensis Yeast and Its Application to the Production of Cold-Active β-d-Galactosidase from Paracoccus sp. 32d |
title_sort | new expression system based on psychrotolerant debaryomyces macquariensis yeast and its application to the production of cold-active β-d-galactosidase from paracoccus sp. 32d |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9569826/ https://www.ncbi.nlm.nih.gov/pubmed/36232994 http://dx.doi.org/10.3390/ijms231911691 |
work_keys_str_mv | AT wanarskamarta anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT krajewskaprzybyszewskaewelina anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT wickagrochockamonika anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT cieslinskihubert anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT pawlakszukalskaanna anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT białkowskaanetam anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT turkiewiczmarianna anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT florczaktomasz anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT gromekewa anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT krysiakjoanna anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT filipowicznatalia anewexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT wanarskamarta newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT krajewskaprzybyszewskaewelina newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT wickagrochockamonika newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT cieslinskihubert newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT pawlakszukalskaanna newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT białkowskaanetam newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT turkiewiczmarianna newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT florczaktomasz newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT gromekewa newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT krysiakjoanna newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d AT filipowicznatalia newexpressionsystembasedonpsychrotolerantdebaryomycesmacquariensisyeastanditsapplicationtotheproductionofcoldactivebdgalactosidasefromparacoccussp32d |