Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion

Oxidative folding of secretory proteins in the endoplasmic reticulum (ER) is a redox active process, which also impacts the redox conditions in the cytosol. As the transcription factor Yap1 is involved in the transcriptional response to oxidative stress, we investigate its role upon the production o...

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Main Authors: Marizela Delic, Alexandra B. Graf, Gunda Koellensperger, Christina Haberhauer-Troyer, Stephan Hann, Diethard Mattanovich, Brigitte Gasser
Format: Article
Language:English
Published: Shared Science Publishers OG 2014-10-01
Series:Microbial Cell
Subjects:
ER
Online Access:http://microbialcell.com/researcharticles/overexpression-of-the-transcription-factor-yap1-modifies-intracellular-redox-conditions-and-enhances-recombinant-protein-secretion/
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spelling doaj-d7816776eb074d1a88f44d4cd21c236a2020-11-24T23:46:55ZengShared Science Publishers OGMicrobial Cell2311-26382014-10-0111137638610.15698/mic2014.11.173Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretionMarizela Delic0Alexandra B. Graf1Gunda Koellensperger2Christina Haberhauer-Troyer3Stephan Hann4Diethard Mattanovich5Brigitte Gasser6Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Austrian Centre of Industrial Biotechnology (ACIB), Vienna, Austria.Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Department of Biotechnology, BOKU University of Natural Resources and Life Sciences Vienna, Vienna, Austria.Oxidative folding of secretory proteins in the endoplasmic reticulum (ER) is a redox active process, which also impacts the redox conditions in the cytosol. As the transcription factor Yap1 is involved in the transcriptional response to oxidative stress, we investigate its role upon the production of secretory proteins, using the yeast Pichia pastoris as model, and report a novel important role of Yap1 during oxidative protein folding. Yap1 is needed for the detoxification of reactive oxygen species (ROS) caused by increased oxidative protein folding. Constitutive co-overexpression of PpYAP1 leads to increased levels of secreted recombinant protein, while a lowered Yap1 function leads to accumulation of ROS and strong flocculation. Transcriptional analysis revealed that more than 150 genes were affected by overexpression of YAP1, in particular genes coding for antioxidant enzymes or involved in oxidation-reduction processes. By monitoring intracellular redox conditions within the cytosol and the ER using redox-sensitive roGFP1 variants, we could show that overexpression of YAP1 restores cellular redox conditions of protein-secreting P. pastoris by reoxidizing the cytosolic redox state to the levels of the wild type. These alterations are also reflected by increased levels of oxidized intracellular glutathione (GSSG) in the YAP1 co-overexpressing strain. Taken together, these data indicate a strong impact of intracellular redox balance on the secretion of (recombinant) proteins without affecting protein folding per se. Re-establishing suitable redox conditions by tuning the antioxidant capacity of the cell reduces metabolic load and cell stress caused by high oxidative protein folding load, thereby increasing the secretion capacity.http://microbialcell.com/researcharticles/overexpression-of-the-transcription-factor-yap1-modifies-intracellular-redox-conditions-and-enhances-recombinant-protein-secretion/ERcytosolcellular redox regulationoxidative protein foldingglutathioneredox sensitive roGFPPichia pastoris
collection DOAJ
language English
format Article
sources DOAJ
author Marizela Delic
Alexandra B. Graf
Gunda Koellensperger
Christina Haberhauer-Troyer
Stephan Hann
Diethard Mattanovich
Brigitte Gasser
spellingShingle Marizela Delic
Alexandra B. Graf
Gunda Koellensperger
Christina Haberhauer-Troyer
Stephan Hann
Diethard Mattanovich
Brigitte Gasser
Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
Microbial Cell
ER
cytosol
cellular redox regulation
oxidative protein folding
glutathione
redox sensitive roGFP
Pichia pastoris
author_facet Marizela Delic
Alexandra B. Graf
Gunda Koellensperger
Christina Haberhauer-Troyer
Stephan Hann
Diethard Mattanovich
Brigitte Gasser
author_sort Marizela Delic
title Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
title_short Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
title_full Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
title_fullStr Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
title_full_unstemmed Overexpression of the transcription factor Yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
title_sort overexpression of the transcription factor yap1 modifies intracellular redox conditions and enhances recombinant protein secretion
publisher Shared Science Publishers OG
series Microbial Cell
issn 2311-2638
publishDate 2014-10-01
description Oxidative folding of secretory proteins in the endoplasmic reticulum (ER) is a redox active process, which also impacts the redox conditions in the cytosol. As the transcription factor Yap1 is involved in the transcriptional response to oxidative stress, we investigate its role upon the production of secretory proteins, using the yeast Pichia pastoris as model, and report a novel important role of Yap1 during oxidative protein folding. Yap1 is needed for the detoxification of reactive oxygen species (ROS) caused by increased oxidative protein folding. Constitutive co-overexpression of PpYAP1 leads to increased levels of secreted recombinant protein, while a lowered Yap1 function leads to accumulation of ROS and strong flocculation. Transcriptional analysis revealed that more than 150 genes were affected by overexpression of YAP1, in particular genes coding for antioxidant enzymes or involved in oxidation-reduction processes. By monitoring intracellular redox conditions within the cytosol and the ER using redox-sensitive roGFP1 variants, we could show that overexpression of YAP1 restores cellular redox conditions of protein-secreting P. pastoris by reoxidizing the cytosolic redox state to the levels of the wild type. These alterations are also reflected by increased levels of oxidized intracellular glutathione (GSSG) in the YAP1 co-overexpressing strain. Taken together, these data indicate a strong impact of intracellular redox balance on the secretion of (recombinant) proteins without affecting protein folding per se. Re-establishing suitable redox conditions by tuning the antioxidant capacity of the cell reduces metabolic load and cell stress caused by high oxidative protein folding load, thereby increasing the secretion capacity.
topic ER
cytosol
cellular redox regulation
oxidative protein folding
glutathione
redox sensitive roGFP
Pichia pastoris
url http://microbialcell.com/researcharticles/overexpression-of-the-transcription-factor-yap1-modifies-intracellular-redox-conditions-and-enhances-recombinant-protein-secretion/
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