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Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch

Mitochondrial and nuclear genomes have to coevolve to ensure the proper functioning of the different mitochondrial complexes that are assembled from peptides encoded by both genomes. Mismatch between these genomes is believed to be strongly selected against due to the consequent impairments of mitoc...

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Autores principales: Pichaud, Nicolas, Bérubé, Roxanne, Côté, Geneviève, Belzile, Claude, Dufresne, France, Morrow, Geneviève, Tanguay, Robert M., Rand, David M., Blier, Pierre U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6391849/
https://www.ncbi.nlm.nih.gov/pubmed/30842791
http://dx.doi.org/10.3389/fgene.2019.00130
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author Pichaud, Nicolas
Bérubé, Roxanne
Côté, Geneviève
Belzile, Claude
Dufresne, France
Morrow, Geneviève
Tanguay, Robert M.
Rand, David M.
Blier, Pierre U.
author_facet Pichaud, Nicolas
Bérubé, Roxanne
Côté, Geneviève
Belzile, Claude
Dufresne, France
Morrow, Geneviève
Tanguay, Robert M.
Rand, David M.
Blier, Pierre U.
author_sort Pichaud, Nicolas
collection PubMed
description Mitochondrial and nuclear genomes have to coevolve to ensure the proper functioning of the different mitochondrial complexes that are assembled from peptides encoded by both genomes. Mismatch between these genomes is believed to be strongly selected against due to the consequent impairments of mitochondrial functions and induction of oxidative stress. Here, we used a Drosophila model harboring an incompatibility between a mitochondrial tRNA(tyr) and its nuclear-encoded mitochondrial tyrosine synthetase to assess the cellular mechanisms affected by this incompatibility and to test the relative contribution of mitonuclear interactions and aging on the expression of impaired phenotypes. Our results show that the mitochondrial tRNA mutation caused a decrease in mitochondrial oxygen consumption in the incompatible nuclear background but no effect with the compatible nuclear background. Mitochondrial DNA copy number increased in the incompatible genotype but that increase failed to rescue mitochondrial functions. The flies harboring mismatch between nuclear and mitochondrial genomes had almost three times the relative mtDNA copy number and fifty percent higher rate of hydrogen peroxide production compared to other genome combinations at 25 days of age. We also found that aging exacerbated the mitochondrial dysfunctions. Our results reveal the tight interactions linking mitonuclear mismatch to mitochondrial dysfunction, mitochondrial DNA regulation, ROS production and aging.
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spelling pubmed-63918492019-03-06 Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch Pichaud, Nicolas Bérubé, Roxanne Côté, Geneviève Belzile, Claude Dufresne, France Morrow, Geneviève Tanguay, Robert M. Rand, David M. Blier, Pierre U. Front Genet Genetics Mitochondrial and nuclear genomes have to coevolve to ensure the proper functioning of the different mitochondrial complexes that are assembled from peptides encoded by both genomes. Mismatch between these genomes is believed to be strongly selected against due to the consequent impairments of mitochondrial functions and induction of oxidative stress. Here, we used a Drosophila model harboring an incompatibility between a mitochondrial tRNA(tyr) and its nuclear-encoded mitochondrial tyrosine synthetase to assess the cellular mechanisms affected by this incompatibility and to test the relative contribution of mitonuclear interactions and aging on the expression of impaired phenotypes. Our results show that the mitochondrial tRNA mutation caused a decrease in mitochondrial oxygen consumption in the incompatible nuclear background but no effect with the compatible nuclear background. Mitochondrial DNA copy number increased in the incompatible genotype but that increase failed to rescue mitochondrial functions. The flies harboring mismatch between nuclear and mitochondrial genomes had almost three times the relative mtDNA copy number and fifty percent higher rate of hydrogen peroxide production compared to other genome combinations at 25 days of age. We also found that aging exacerbated the mitochondrial dysfunctions. Our results reveal the tight interactions linking mitonuclear mismatch to mitochondrial dysfunction, mitochondrial DNA regulation, ROS production and aging. Frontiers Media S.A. 2019-02-20 /pmc/articles/PMC6391849/ /pubmed/30842791 http://dx.doi.org/10.3389/fgene.2019.00130 Text en Copyright © 2019 Pichaud, Bérubé, Côté, Belzile, Dufresne, Morrow, Tanguay, Rand and Blier. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Pichaud, Nicolas
Bérubé, Roxanne
Côté, Geneviève
Belzile, Claude
Dufresne, France
Morrow, Geneviève
Tanguay, Robert M.
Rand, David M.
Blier, Pierre U.
Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title_full Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title_fullStr Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title_full_unstemmed Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title_short Age Dependent Dysfunction of Mitochondrial and ROS Metabolism Induced by Mitonuclear Mismatch
title_sort age dependent dysfunction of mitochondrial and ros metabolism induced by mitonuclear mismatch
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6391849/
https://www.ncbi.nlm.nih.gov/pubmed/30842791
http://dx.doi.org/10.3389/fgene.2019.00130
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