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Research Article | Molecular Biology and Physiology

Gcn5p and Ubp8p Affect Protein Ubiquitylation and Cell Proliferation by Altering the Fermentative/Respiratory Flux Balance in Saccharomyces cerevisiae

Antonella De Palma, Giulia Fanelli, Elisabetta Cretella, Veronica De Luca, Raffaele Antonio Palladino, Valentina Panzeri, Valentina Roffia, Michele Saliola, Pierluigi Mauri, Patrizia Filetici
Sang Yup Lee, Editor
Antonella De Palma
aProteomics and Metabolomics Unit, Institute for Biomedical Technologies (ITB-CNR), Segrate, Italy
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Giulia Fanelli
bInstitute of Molecular Biology and Pathology/CNR, Sapienza University of Rome, Rome, Italy
cDepartment of Biology and Biotechnologies Charles Darwin, Sapienza University of Rome, Rome, Italy
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Elisabetta Cretella
bInstitute of Molecular Biology and Pathology/CNR, Sapienza University of Rome, Rome, Italy
cDepartment of Biology and Biotechnologies Charles Darwin, Sapienza University of Rome, Rome, Italy
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Veronica De Luca
bInstitute of Molecular Biology and Pathology/CNR, Sapienza University of Rome, Rome, Italy
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Raffaele Antonio Palladino
bInstitute of Molecular Biology and Pathology/CNR, Sapienza University of Rome, Rome, Italy
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Valentina Panzeri
aProteomics and Metabolomics Unit, Institute for Biomedical Technologies (ITB-CNR), Segrate, Italy
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Valentina Roffia
aProteomics and Metabolomics Unit, Institute for Biomedical Technologies (ITB-CNR), Segrate, Italy
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Michele Saliola
cDepartment of Biology and Biotechnologies Charles Darwin, Sapienza University of Rome, Rome, Italy
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Pierluigi Mauri
aProteomics and Metabolomics Unit, Institute for Biomedical Technologies (ITB-CNR), Segrate, Italy
dInstitute of Life Sciences, School of Advanced Studies Sant’Anna, Pisa, Italy
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Patrizia Filetici
bInstitute of Molecular Biology and Pathology/CNR, Sapienza University of Rome, Rome, Italy
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Sang Yup Lee
Korea Advanced Institute of Science and Technology
Roles: Editor
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DOI: 10.1128/mBio.01504-20
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ABSTRACT

Protein ubiquitylation regulates not only endocellular trafficking and proteasomal degradation but also the catalytic activity of enzymes. In Saccharomyces cerevisiae, we analyzed the composition of the ubiquitylated proteomes in strains lacking acetyltransferase Gcn5p, Ub-protease Ubp8p, or both to understand their involvement in the regulation of protein ubiquitylation. We analyzed His6Ub proteins with a proteomic approach coupling micro-liquid chromatography and tandem mass spectrometry (μLC-MS/MS) in gcn5Δ, ubp8Δ and ubp8Δ gcn5Δ strains. The Ub-proteome altered in the absence of Gcn5p, Ubp8p, or both was characterized, showing that 43% of the proteins was shared in all strains, suggesting their functional relationship. Remarkably, all major glycolytic enzymes showed increased ubiquitylation. Phosphofructokinase 1, the key enzyme of glycolytic flux, showed a higher and altered pattern of ubiquitylation in gcn5Δ and ubp8Δ strains. Severe defects of growth in poor sugar and altered glucose consumption confirmed a direct role of Gcn5p and Ubp8p in affecting the REDOX balance of the cell.

IMPORTANCE We propose a study showing a novel role of Gcn5p and Ubp8p in the process of ubiquitylation of the yeast proteome which includes main glycolytic enzymes. Interestingly, in the absence of Gcn5p and Ubp8p glucose consumption and redox balance were altered in yeast. We believe that these results and the role of Gcn5p and Ubp8p in sugar metabolism might open new perspectives of research leading to novel protocols for counteracting the enhanced glycolysis in tumors.

  • Copyright © 2020 De Palma et al.

This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license.

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Gcn5p and Ubp8p Affect Protein Ubiquitylation and Cell Proliferation by Altering the Fermentative/Respiratory Flux Balance in Saccharomyces cerevisiae
Antonella De Palma, Giulia Fanelli, Elisabetta Cretella, Veronica De Luca, Raffaele Antonio Palladino, Valentina Panzeri, Valentina Roffia, Michele Saliola, Pierluigi Mauri, Patrizia Filetici
mBio Aug 2020, 11 (4) e01504-20; DOI: 10.1128/mBio.01504-20

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Gcn5p and Ubp8p Affect Protein Ubiquitylation and Cell Proliferation by Altering the Fermentative/Respiratory Flux Balance in Saccharomyces cerevisiae
Antonella De Palma, Giulia Fanelli, Elisabetta Cretella, Veronica De Luca, Raffaele Antonio Palladino, Valentina Panzeri, Valentina Roffia, Michele Saliola, Pierluigi Mauri, Patrizia Filetici
mBio Aug 2020, 11 (4) e01504-20; DOI: 10.1128/mBio.01504-20
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KEYWORDS

ubiquitylation
Gcn5p
Ubp8p
glycolytic flux
sugar utilization

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