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Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia

Growing evidence is showing that acetylation plays an essential role in cancer, but studies on the impact of KDAC inhibition (KDACi) on the metabolic profile are still in their infancy. Here, we analyzed, by using an iTRAQ-based quantitative proteomics approach, the changes in the proteome of KRAS-m...

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Autores principales: Martín-Bernabé, Alfonso, Tarragó-Celada, Josep, Cunin, Valérie, Michelland, Sylvie, Cortés, Roldán, Poignant, Johann, Boyault, Cyril, Rachidi, Walid, Bourgoin-Voillard, Sandrine, Cascante, Marta, Seve, Michel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036653/
https://www.ncbi.nlm.nih.gov/pubmed/33806075
http://dx.doi.org/10.3390/ijms22073378
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author Martín-Bernabé, Alfonso
Tarragó-Celada, Josep
Cunin, Valérie
Michelland, Sylvie
Cortés, Roldán
Poignant, Johann
Boyault, Cyril
Rachidi, Walid
Bourgoin-Voillard, Sandrine
Cascante, Marta
Seve, Michel
author_facet Martín-Bernabé, Alfonso
Tarragó-Celada, Josep
Cunin, Valérie
Michelland, Sylvie
Cortés, Roldán
Poignant, Johann
Boyault, Cyril
Rachidi, Walid
Bourgoin-Voillard, Sandrine
Cascante, Marta
Seve, Michel
author_sort Martín-Bernabé, Alfonso
collection PubMed
description Growing evidence is showing that acetylation plays an essential role in cancer, but studies on the impact of KDAC inhibition (KDACi) on the metabolic profile are still in their infancy. Here, we analyzed, by using an iTRAQ-based quantitative proteomics approach, the changes in the proteome of KRAS-mutated non-small cell lung cancer (NSCLC) A549 cells in response to trichostatin-A (TSA) and nicotinamide (NAM) under normoxia and hypoxia. Part of this response was further validated by molecular and biochemical analyses and correlated with the proliferation rates, apoptotic cell death, and activation of ROS scavenging mechanisms in opposition to the ROS production. Despite the differences among the KDAC inhibitors, up-regulation of glycolysis, TCA cycle, oxidative phosphorylation and fatty acid synthesis emerged as a common metabolic response underlying KDACi. We also observed that some of the KDACi effects at metabolic levels are enhanced under hypoxia. Furthermore, we used a drug repositioning machine learning approach to list candidate metabolic therapeutic agents for KRAS mutated NSCLC. Together, these results allow us to better understand the metabolic regulations underlying KDACi in NSCLC, taking into account the microenvironment of tumors related to hypoxia, and bring new insights for the future rational design of new therapies.
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spelling pubmed-80366532021-04-12 Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia Martín-Bernabé, Alfonso Tarragó-Celada, Josep Cunin, Valérie Michelland, Sylvie Cortés, Roldán Poignant, Johann Boyault, Cyril Rachidi, Walid Bourgoin-Voillard, Sandrine Cascante, Marta Seve, Michel Int J Mol Sci Article Growing evidence is showing that acetylation plays an essential role in cancer, but studies on the impact of KDAC inhibition (KDACi) on the metabolic profile are still in their infancy. Here, we analyzed, by using an iTRAQ-based quantitative proteomics approach, the changes in the proteome of KRAS-mutated non-small cell lung cancer (NSCLC) A549 cells in response to trichostatin-A (TSA) and nicotinamide (NAM) under normoxia and hypoxia. Part of this response was further validated by molecular and biochemical analyses and correlated with the proliferation rates, apoptotic cell death, and activation of ROS scavenging mechanisms in opposition to the ROS production. Despite the differences among the KDAC inhibitors, up-regulation of glycolysis, TCA cycle, oxidative phosphorylation and fatty acid synthesis emerged as a common metabolic response underlying KDACi. We also observed that some of the KDACi effects at metabolic levels are enhanced under hypoxia. Furthermore, we used a drug repositioning machine learning approach to list candidate metabolic therapeutic agents for KRAS mutated NSCLC. Together, these results allow us to better understand the metabolic regulations underlying KDACi in NSCLC, taking into account the microenvironment of tumors related to hypoxia, and bring new insights for the future rational design of new therapies. MDPI 2021-03-25 /pmc/articles/PMC8036653/ /pubmed/33806075 http://dx.doi.org/10.3390/ijms22073378 Text en © 2021 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 (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Martín-Bernabé, Alfonso
Tarragó-Celada, Josep
Cunin, Valérie
Michelland, Sylvie
Cortés, Roldán
Poignant, Johann
Boyault, Cyril
Rachidi, Walid
Bourgoin-Voillard, Sandrine
Cascante, Marta
Seve, Michel
Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title_full Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title_fullStr Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title_full_unstemmed Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title_short Quantitative Proteomic Approach Reveals Altered Metabolic Pathways in Response to the Inhibition of Lysine Deacetylases in A549 Cells under Normoxia and Hypoxia
title_sort quantitative proteomic approach reveals altered metabolic pathways in response to the inhibition of lysine deacetylases in a549 cells under normoxia and hypoxia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8036653/
https://www.ncbi.nlm.nih.gov/pubmed/33806075
http://dx.doi.org/10.3390/ijms22073378
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