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Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice

The polyunsaturated nature of n-3 fatty acids makes them prone to oxidative damage. However, it is not clear if n-3 fatty acids are simply a passive site for oxidative attack or if they also modulate mitochondrial reactive oxygen species (ROS) production. The present study used fat-1 transgenic mice...

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Autores principales: Hagopian, Kevork, Weber, Kristina L., Hwee, Darren T., Van Eenennaam, Alison L., López-Lluch, Guillermo, Villalba, José M., Burón, Isabel, Navas, Plácido, German, J. Bruce, Watkins, Steven M., Chen, Yana, Wei, Alfreda, McDonald, Roger B., Ramsey, Jon J.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2938348/
https://www.ncbi.nlm.nih.gov/pubmed/20856881
http://dx.doi.org/10.1371/journal.pone.0012696
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author Hagopian, Kevork
Weber, Kristina L.
Hwee, Darren T.
Van Eenennaam, Alison L.
López-Lluch, Guillermo
Villalba, José M.
Burón, Isabel
Navas, Plácido
German, J. Bruce
Watkins, Steven M.
Chen, Yana
Wei, Alfreda
McDonald, Roger B.
Ramsey, Jon J.
author_facet Hagopian, Kevork
Weber, Kristina L.
Hwee, Darren T.
Van Eenennaam, Alison L.
López-Lluch, Guillermo
Villalba, José M.
Burón, Isabel
Navas, Plácido
German, J. Bruce
Watkins, Steven M.
Chen, Yana
Wei, Alfreda
McDonald, Roger B.
Ramsey, Jon J.
author_sort Hagopian, Kevork
collection PubMed
description The polyunsaturated nature of n-3 fatty acids makes them prone to oxidative damage. However, it is not clear if n-3 fatty acids are simply a passive site for oxidative attack or if they also modulate mitochondrial reactive oxygen species (ROS) production. The present study used fat-1 transgenic mice, that are capable of synthesizing n-3 fatty acids, to investigate the influence of increases in n-3 fatty acids and resultant decreases in the n-6∶n-3 ratio on liver mitochondrial H(2)O(2) production and electron transport chain (ETC) activity. There was an increase in n-3 fatty acids and a decrease in the n-6∶n-3 ratio in liver mitochondria from the fat-1 compared to control mice. This change was largely due to alterations in the fatty acid composition of phosphatidylcholine and phosphatidylethanolamine, with only a small percentage of fatty acids in cardiolipin being altered in the fat-1 animals. The lipid changes in the fat-1 mice were associated with a decrease (p<0.05) in the activity of ETC complex I and increases (p<0.05) in the activities of complexes III and IV. Mitochondrial H(2)O(2) production with either succinate or succinate/glutamate/malate substrates was also decreased (p<0.05) in the fat-1 mice. This change in H(2)O(2) production was due to a decrease in ROS production from ETC complex I in the fat-1 animals. These results indicate that the fatty acid changes in fat-1 liver mitochondria may at least partially oppose oxidative stress by limiting ROS production from ETC complex I.
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spelling pubmed-29383482010-09-20 Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice Hagopian, Kevork Weber, Kristina L. Hwee, Darren T. Van Eenennaam, Alison L. López-Lluch, Guillermo Villalba, José M. Burón, Isabel Navas, Plácido German, J. Bruce Watkins, Steven M. Chen, Yana Wei, Alfreda McDonald, Roger B. Ramsey, Jon J. PLoS One Research Article The polyunsaturated nature of n-3 fatty acids makes them prone to oxidative damage. However, it is not clear if n-3 fatty acids are simply a passive site for oxidative attack or if they also modulate mitochondrial reactive oxygen species (ROS) production. The present study used fat-1 transgenic mice, that are capable of synthesizing n-3 fatty acids, to investigate the influence of increases in n-3 fatty acids and resultant decreases in the n-6∶n-3 ratio on liver mitochondrial H(2)O(2) production and electron transport chain (ETC) activity. There was an increase in n-3 fatty acids and a decrease in the n-6∶n-3 ratio in liver mitochondria from the fat-1 compared to control mice. This change was largely due to alterations in the fatty acid composition of phosphatidylcholine and phosphatidylethanolamine, with only a small percentage of fatty acids in cardiolipin being altered in the fat-1 animals. The lipid changes in the fat-1 mice were associated with a decrease (p<0.05) in the activity of ETC complex I and increases (p<0.05) in the activities of complexes III and IV. Mitochondrial H(2)O(2) production with either succinate or succinate/glutamate/malate substrates was also decreased (p<0.05) in the fat-1 mice. This change in H(2)O(2) production was due to a decrease in ROS production from ETC complex I in the fat-1 animals. These results indicate that the fatty acid changes in fat-1 liver mitochondria may at least partially oppose oxidative stress by limiting ROS production from ETC complex I. Public Library of Science 2010-09-13 /pmc/articles/PMC2938348/ /pubmed/20856881 http://dx.doi.org/10.1371/journal.pone.0012696 Text en Hagopian 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
Hagopian, Kevork
Weber, Kristina L.
Hwee, Darren T.
Van Eenennaam, Alison L.
López-Lluch, Guillermo
Villalba, José M.
Burón, Isabel
Navas, Plácido
German, J. Bruce
Watkins, Steven M.
Chen, Yana
Wei, Alfreda
McDonald, Roger B.
Ramsey, Jon J.
Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title_full Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title_fullStr Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title_full_unstemmed Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title_short Complex I-Associated Hydrogen Peroxide Production Is Decreased and Electron Transport Chain Enzyme Activities Are Altered in n-3 Enriched fat-1 Mice
title_sort complex i-associated hydrogen peroxide production is decreased and electron transport chain enzyme activities are altered in n-3 enriched fat-1 mice
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2938348/
https://www.ncbi.nlm.nih.gov/pubmed/20856881
http://dx.doi.org/10.1371/journal.pone.0012696
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