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The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction

To investigate the role mitochondrial membrane lipids play in the actions of CR (calorie restriction), C57BL/6 mice were assigned to four groups (control and three 40% CR groups) and the CR groups were fed diets containing soya bean oil (also in the control diet), fish oil or lard. The fatty acid co...

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Autores principales: Chen, Yana, Hagopian, Kevork, Bibus, Douglas, Villalba, José M., López-Lluch, Guillermo, Navas, Plácido, Kim, Kyoungmi, McDonald, Roger B., Ramsey, Jon J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522480/
https://www.ncbi.nlm.nih.gov/pubmed/23098316
http://dx.doi.org/10.1042/BSR20120060
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author Chen, Yana
Hagopian, Kevork
Bibus, Douglas
Villalba, José M.
López-Lluch, Guillermo
Navas, Plácido
Kim, Kyoungmi
McDonald, Roger B.
Ramsey, Jon J.
author_facet Chen, Yana
Hagopian, Kevork
Bibus, Douglas
Villalba, José M.
López-Lluch, Guillermo
Navas, Plácido
Kim, Kyoungmi
McDonald, Roger B.
Ramsey, Jon J.
author_sort Chen, Yana
collection PubMed
description To investigate the role mitochondrial membrane lipids play in the actions of CR (calorie restriction), C57BL/6 mice were assigned to four groups (control and three 40% CR groups) and the CR groups were fed diets containing soya bean oil (also in the control diet), fish oil or lard. The fatty acid composition of the major mitochondrial phospholipid classes, proton leak and H(2)O(2) production were measured in liver mitochondria following 1 month of CR. The results indicate that mitochondrial phospholipid fatty acids reflect the PUFA (polyunsaturated fatty acid) profile of the dietary lipid sources. CR significantly decreased the capacity of ROS (reactive oxygen species) production by Complex III but did not markedly alter proton leak and ETC (electron transport chain) enzyme activities. Within the CR regimens, the CR-fish group had decreased ROS production by both Complexes I and III, and increased proton leak when compared with the other CR groups. The CR-lard group showed the lowest proton leak compared with the other CR groups. The ETC enzyme activity measurements in the CR regimens showed that Complex I activity was decreased in both the CR-fish and CR-lard groups. Moreover, the CR-fish group also had lower Complex II activity compared with the other CR groups. These results indicate that dietary lipid composition does influence liver mitochondrial phospholipid composition, ROS production, proton leak and ETC enzyme activities in CR animals.
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spelling pubmed-35224802012-12-28 The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction Chen, Yana Hagopian, Kevork Bibus, Douglas Villalba, José M. López-Lluch, Guillermo Navas, Plácido Kim, Kyoungmi McDonald, Roger B. Ramsey, Jon J. Biosci Rep Original Paper To investigate the role mitochondrial membrane lipids play in the actions of CR (calorie restriction), C57BL/6 mice were assigned to four groups (control and three 40% CR groups) and the CR groups were fed diets containing soya bean oil (also in the control diet), fish oil or lard. The fatty acid composition of the major mitochondrial phospholipid classes, proton leak and H(2)O(2) production were measured in liver mitochondria following 1 month of CR. The results indicate that mitochondrial phospholipid fatty acids reflect the PUFA (polyunsaturated fatty acid) profile of the dietary lipid sources. CR significantly decreased the capacity of ROS (reactive oxygen species) production by Complex III but did not markedly alter proton leak and ETC (electron transport chain) enzyme activities. Within the CR regimens, the CR-fish group had decreased ROS production by both Complexes I and III, and increased proton leak when compared with the other CR groups. The CR-lard group showed the lowest proton leak compared with the other CR groups. The ETC enzyme activity measurements in the CR regimens showed that Complex I activity was decreased in both the CR-fish and CR-lard groups. Moreover, the CR-fish group also had lower Complex II activity compared with the other CR groups. These results indicate that dietary lipid composition does influence liver mitochondrial phospholipid composition, ROS production, proton leak and ETC enzyme activities in CR animals. Portland Press Ltd. 2012-12-13 /pmc/articles/PMC3522480/ /pubmed/23098316 http://dx.doi.org/10.1042/BSR20120060 Text en © 2013 The Author(s). http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial Licence (http://creativecommons.org/licenses/by-nc/2.5/) which permits unrestricted non-commercial use, distribution and reproduction in any medium, provided the original work is properly cited
spellingShingle Original Paper
Chen, Yana
Hagopian, Kevork
Bibus, Douglas
Villalba, José M.
López-Lluch, Guillermo
Navas, Plácido
Kim, Kyoungmi
McDonald, Roger B.
Ramsey, Jon J.
The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title_full The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title_fullStr The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title_full_unstemmed The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title_short The influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
title_sort influence of dietary lipid composition on liver mitochondria from mice following 1 month of calorie restriction
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3522480/
https://www.ncbi.nlm.nih.gov/pubmed/23098316
http://dx.doi.org/10.1042/BSR20120060
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