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PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours

BACKGROUND: The PGC-1 related coactivator (PRC), which shares structural and functional features with PGC-1α, is believed to regulate several metabolic pathways as well as mitochondrial biogenesis. Its involvement in the early programming of cell proliferation suggests the existence of finely regula...

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Autores principales: Raharijaona, Mahatsangy, Le Pennec, Soazig, Poirier, Julie, Mirebeau-Prunier, Delphine, Rouxel, Clothilde, Jacques, Caroline, Fontaine, Jean-Fred, Malthiery, Yves, Houlgatte, Rémi, Savagner, Frédérique
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2776512/
https://www.ncbi.nlm.nih.gov/pubmed/19956726
http://dx.doi.org/10.1371/journal.pone.0007964
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author Raharijaona, Mahatsangy
Le Pennec, Soazig
Poirier, Julie
Mirebeau-Prunier, Delphine
Rouxel, Clothilde
Jacques, Caroline
Fontaine, Jean-Fred
Malthiery, Yves
Houlgatte, Rémi
Savagner, Frédérique
author_facet Raharijaona, Mahatsangy
Le Pennec, Soazig
Poirier, Julie
Mirebeau-Prunier, Delphine
Rouxel, Clothilde
Jacques, Caroline
Fontaine, Jean-Fred
Malthiery, Yves
Houlgatte, Rémi
Savagner, Frédérique
author_sort Raharijaona, Mahatsangy
collection PubMed
description BACKGROUND: The PGC-1 related coactivator (PRC), which shares structural and functional features with PGC-1α, is believed to regulate several metabolic pathways as well as mitochondrial biogenesis. Its involvement in the early programming of cell proliferation suggests the existence of finely regulated crosstalk between mitochondrial functions and the cell cycle status. METHODOLOGY/PRINCIPAL FINDINGS: PRC-regulated pathways were explored in a cell-line model derived from mitochondrial-rich tumours with an essentially oxidative metabolism and specifically high PRC expression. The functional status of mitochondria was compared to the results of microarray analysis under conditions of temporal PRC inhibition. To specify the fine PRC regulation, the expression levels of the genes and proteins involved in the oxidative phosphorylation process were studied by real time quantitative PCR and western blotting. As in earlier studies on PGC-1α, we investigated the role of nitric oxide in PRC-regulated mitochondrial biogenesis and determined its action in the control of the phosphorylation status of the mitogen-activated protein kinase pathway. CONCLUSION/SIGNIFICANCE: We found that nitric oxide rapidly influences PRC expression at the transcriptional level. Focusing on mitochondrial energetic metabolism, we observed that PRC differentially controls respiratory chain complexes and coupling efficiency in a time-dependent manner to maintain mitochondrial homeostasis. Our results highlight the key role of PRC in the rapid modulation of metabolic functions in response to the status of the cell cycle.
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spelling pubmed-27765122009-12-03 PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours Raharijaona, Mahatsangy Le Pennec, Soazig Poirier, Julie Mirebeau-Prunier, Delphine Rouxel, Clothilde Jacques, Caroline Fontaine, Jean-Fred Malthiery, Yves Houlgatte, Rémi Savagner, Frédérique PLoS One Research Article BACKGROUND: The PGC-1 related coactivator (PRC), which shares structural and functional features with PGC-1α, is believed to regulate several metabolic pathways as well as mitochondrial biogenesis. Its involvement in the early programming of cell proliferation suggests the existence of finely regulated crosstalk between mitochondrial functions and the cell cycle status. METHODOLOGY/PRINCIPAL FINDINGS: PRC-regulated pathways were explored in a cell-line model derived from mitochondrial-rich tumours with an essentially oxidative metabolism and specifically high PRC expression. The functional status of mitochondria was compared to the results of microarray analysis under conditions of temporal PRC inhibition. To specify the fine PRC regulation, the expression levels of the genes and proteins involved in the oxidative phosphorylation process were studied by real time quantitative PCR and western blotting. As in earlier studies on PGC-1α, we investigated the role of nitric oxide in PRC-regulated mitochondrial biogenesis and determined its action in the control of the phosphorylation status of the mitogen-activated protein kinase pathway. CONCLUSION/SIGNIFICANCE: We found that nitric oxide rapidly influences PRC expression at the transcriptional level. Focusing on mitochondrial energetic metabolism, we observed that PRC differentially controls respiratory chain complexes and coupling efficiency in a time-dependent manner to maintain mitochondrial homeostasis. Our results highlight the key role of PRC in the rapid modulation of metabolic functions in response to the status of the cell cycle. Public Library of Science 2009-11-23 /pmc/articles/PMC2776512/ /pubmed/19956726 http://dx.doi.org/10.1371/journal.pone.0007964 Text en Raharijaona 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
Raharijaona, Mahatsangy
Le Pennec, Soazig
Poirier, Julie
Mirebeau-Prunier, Delphine
Rouxel, Clothilde
Jacques, Caroline
Fontaine, Jean-Fred
Malthiery, Yves
Houlgatte, Rémi
Savagner, Frédérique
PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title_full PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title_fullStr PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title_full_unstemmed PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title_short PGC-1-Related Coactivator Modulates Mitochondrial-Nuclear Crosstalk through Endogenous Nitric Oxide in a Cellular Model of Oncocytic Thyroid Tumours
title_sort pgc-1-related coactivator modulates mitochondrial-nuclear crosstalk through endogenous nitric oxide in a cellular model of oncocytic thyroid tumours
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2776512/
https://www.ncbi.nlm.nih.gov/pubmed/19956726
http://dx.doi.org/10.1371/journal.pone.0007964
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