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Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha

The type I membrane protein calnexin is a conserved key component of the quality control mechanism in the endoplasmic reticulum. It functions as a molecular chaperone that monitors the folding state of nascent polypeptides entering the endoplasmic reticulum. Calnexin also behaves as a lectin, as its...

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Autores principales: Klabunde, Jens, Kleebank, Sebastian, Piontek, Michael, Hollenberg, Cornelis P, Hellwig, Stephan, Degelmann, Adelheid
Formato: Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2040192/
https://www.ncbi.nlm.nih.gov/pubmed/17617219
http://dx.doi.org/10.1111/j.1567-1364.2007.00271.x
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author Klabunde, Jens
Kleebank, Sebastian
Piontek, Michael
Hollenberg, Cornelis P
Hellwig, Stephan
Degelmann, Adelheid
author_facet Klabunde, Jens
Kleebank, Sebastian
Piontek, Michael
Hollenberg, Cornelis P
Hellwig, Stephan
Degelmann, Adelheid
author_sort Klabunde, Jens
collection PubMed
description The type I membrane protein calnexin is a conserved key component of the quality control mechanism in the endoplasmic reticulum. It functions as a molecular chaperone that monitors the folding state of nascent polypeptides entering the endoplasmic reticulum. Calnexin also behaves as a lectin, as its chaperoning activity involves binding of oligosaccharide moieties present on newly imported glycoproteins. We isolated the calnexin gene (HpCNE1) from the methylotrophic yeast Hansenula polymorpha, and used HpCNE1 expression plasmids for supertransformation of H. polymorpha strains secreting target proteins of biotechnological interest. The elevated dosage of HpCNE1 enhanced secretion of the four proteins tested: three glycoproteins and one unglycosylated product. Secretion of bacterial alginate epimerase AlgE1 was increased threefold on average, and secretion of both human interferon-γ and fungal consensus phytase twofold. With phytase and AlgE1 this improvement was all the more remarkable, as the secretion level was already high in the original strains (g L(−1) range). The same approach improved secretion of human serum albumin, which lacks N-linked glycans, about twofold. Glycosylation of the pro-MFα1 leader may account for the effect of calnexin in this case. Our results argue that cooverexpression of calnexin can serve as a generally applicable tool for enhancing the secretion of all types of heterologous protein by H. polymorpha.
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spelling pubmed-20401922007-10-25 Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha Klabunde, Jens Kleebank, Sebastian Piontek, Michael Hollenberg, Cornelis P Hellwig, Stephan Degelmann, Adelheid FEMS Yeast Res Research Articles The type I membrane protein calnexin is a conserved key component of the quality control mechanism in the endoplasmic reticulum. It functions as a molecular chaperone that monitors the folding state of nascent polypeptides entering the endoplasmic reticulum. Calnexin also behaves as a lectin, as its chaperoning activity involves binding of oligosaccharide moieties present on newly imported glycoproteins. We isolated the calnexin gene (HpCNE1) from the methylotrophic yeast Hansenula polymorpha, and used HpCNE1 expression plasmids for supertransformation of H. polymorpha strains secreting target proteins of biotechnological interest. The elevated dosage of HpCNE1 enhanced secretion of the four proteins tested: three glycoproteins and one unglycosylated product. Secretion of bacterial alginate epimerase AlgE1 was increased threefold on average, and secretion of both human interferon-γ and fungal consensus phytase twofold. With phytase and AlgE1 this improvement was all the more remarkable, as the secretion level was already high in the original strains (g L(−1) range). The same approach improved secretion of human serum albumin, which lacks N-linked glycans, about twofold. Glycosylation of the pro-MFα1 leader may account for the effect of calnexin in this case. Our results argue that cooverexpression of calnexin can serve as a generally applicable tool for enhancing the secretion of all types of heterologous protein by H. polymorpha. Blackwell Publishing Ltd 2007-10 2007-07-06 /pmc/articles/PMC2040192/ /pubmed/17617219 http://dx.doi.org/10.1111/j.1567-1364.2007.00271.x Text en © 2007 Artes Technology GmbH Journal compilation © 2007 Federation of European Microbiological Societies https://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Research Articles
Klabunde, Jens
Kleebank, Sebastian
Piontek, Michael
Hollenberg, Cornelis P
Hellwig, Stephan
Degelmann, Adelheid
Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title_full Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title_fullStr Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title_full_unstemmed Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title_short Increase of calnexin gene dosage boosts the secretion of heterologous proteins by Hansenula polymorpha
title_sort increase of calnexin gene dosage boosts the secretion of heterologous proteins by hansenula polymorpha
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2040192/
https://www.ncbi.nlm.nih.gov/pubmed/17617219
http://dx.doi.org/10.1111/j.1567-1364.2007.00271.x
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