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An Engineered Yeast Efficiently Secreting Penicillin

This study aimed at developing an alternative host for the production of penicillin (PEN). As yet, the industrial production of this β-lactam antibiotic is confined to the filamentous fungus Penicillium chrysogenum. As such, the yeast Hansenula polymorpha, a recognized producer of pharmaceuticals, r...

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Autores principales: Gidijala, Loknath, Kiel, Jan A. K. W., Douma, Rutger D., Seifar, Reza M., van Gulik, Walter M., Bovenberg, Roel A. L., Veenhuis, Marten, van der Klei, Ida J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789386/
https://www.ncbi.nlm.nih.gov/pubmed/20016817
http://dx.doi.org/10.1371/journal.pone.0008317
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author Gidijala, Loknath
Kiel, Jan A. K. W.
Douma, Rutger D.
Seifar, Reza M.
van Gulik, Walter M.
Bovenberg, Roel A. L.
Veenhuis, Marten
van der Klei, Ida J.
author_facet Gidijala, Loknath
Kiel, Jan A. K. W.
Douma, Rutger D.
Seifar, Reza M.
van Gulik, Walter M.
Bovenberg, Roel A. L.
Veenhuis, Marten
van der Klei, Ida J.
author_sort Gidijala, Loknath
collection PubMed
description This study aimed at developing an alternative host for the production of penicillin (PEN). As yet, the industrial production of this β-lactam antibiotic is confined to the filamentous fungus Penicillium chrysogenum. As such, the yeast Hansenula polymorpha, a recognized producer of pharmaceuticals, represents an attractive alternative. Introduction of the P. chrysogenum gene encoding the non-ribosomal peptide synthetase (NRPS) δ-(L-α-aminoadipyl)-L-cysteinyl-D-valine synthetase (ACVS) in H. polymorpha, resulted in the production of active ACVS enzyme, when co-expressed with the Bacillus subtilis sfp gene encoding a phosphopantetheinyl transferase that activated ACVS. This represents the first example of the functional expression of a non-ribosomal peptide synthetase in yeast. Co-expression with the P. chrysogenum genes encoding the cytosolic enzyme isopenicillin N synthase as well as the two peroxisomal enzymes isopenicillin N acyl transferase (IAT) and phenylacetyl CoA ligase (PCL) resulted in production of biologically active PEN, which was efficiently secreted. The amount of secreted PEN was similar to that produced by the original P. chrysogenum NRRL1951 strain (approx. 1 mg/L). PEN production was decreased over two-fold in a yeast strain lacking peroxisomes, indicating that the peroxisomal localization of IAT and PCL is important for efficient PEN production. The breakthroughs of this work enable exploration of new yeast-based cell factories for the production of (novel) β-lactam antibiotics as well as other natural and semi-synthetic peptides (e.g. immunosuppressive and cytostatic agents), whose production involves NRPS's.
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spelling pubmed-27893862009-12-17 An Engineered Yeast Efficiently Secreting Penicillin Gidijala, Loknath Kiel, Jan A. K. W. Douma, Rutger D. Seifar, Reza M. van Gulik, Walter M. Bovenberg, Roel A. L. Veenhuis, Marten van der Klei, Ida J. PLoS One Research Article This study aimed at developing an alternative host for the production of penicillin (PEN). As yet, the industrial production of this β-lactam antibiotic is confined to the filamentous fungus Penicillium chrysogenum. As such, the yeast Hansenula polymorpha, a recognized producer of pharmaceuticals, represents an attractive alternative. Introduction of the P. chrysogenum gene encoding the non-ribosomal peptide synthetase (NRPS) δ-(L-α-aminoadipyl)-L-cysteinyl-D-valine synthetase (ACVS) in H. polymorpha, resulted in the production of active ACVS enzyme, when co-expressed with the Bacillus subtilis sfp gene encoding a phosphopantetheinyl transferase that activated ACVS. This represents the first example of the functional expression of a non-ribosomal peptide synthetase in yeast. Co-expression with the P. chrysogenum genes encoding the cytosolic enzyme isopenicillin N synthase as well as the two peroxisomal enzymes isopenicillin N acyl transferase (IAT) and phenylacetyl CoA ligase (PCL) resulted in production of biologically active PEN, which was efficiently secreted. The amount of secreted PEN was similar to that produced by the original P. chrysogenum NRRL1951 strain (approx. 1 mg/L). PEN production was decreased over two-fold in a yeast strain lacking peroxisomes, indicating that the peroxisomal localization of IAT and PCL is important for efficient PEN production. The breakthroughs of this work enable exploration of new yeast-based cell factories for the production of (novel) β-lactam antibiotics as well as other natural and semi-synthetic peptides (e.g. immunosuppressive and cytostatic agents), whose production involves NRPS's. Public Library of Science 2009-12-15 /pmc/articles/PMC2789386/ /pubmed/20016817 http://dx.doi.org/10.1371/journal.pone.0008317 Text en Gidijala 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Gidijala, Loknath
Kiel, Jan A. K. W.
Douma, Rutger D.
Seifar, Reza M.
van Gulik, Walter M.
Bovenberg, Roel A. L.
Veenhuis, Marten
van der Klei, Ida J.
An Engineered Yeast Efficiently Secreting Penicillin
title An Engineered Yeast Efficiently Secreting Penicillin
title_full An Engineered Yeast Efficiently Secreting Penicillin
title_fullStr An Engineered Yeast Efficiently Secreting Penicillin
title_full_unstemmed An Engineered Yeast Efficiently Secreting Penicillin
title_short An Engineered Yeast Efficiently Secreting Penicillin
title_sort engineered yeast efficiently secreting penicillin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2789386/
https://www.ncbi.nlm.nih.gov/pubmed/20016817
http://dx.doi.org/10.1371/journal.pone.0008317
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