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Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels

It has been suggested that mitochondrial dysfunction has an influence on lipid metabolism. The fact that mitochondrial defects can be accumulated over time as a normal part of aging may explain why cholesterol levels often are altered with age. To test the hypothesis whether mitochondrial variants a...

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Autores principales: Flaquer, Antònia, Rospleszcz, Susanne, Reischl, Eva, Zeilinger, Sonja, Prokisch, Holger, Meitinger, Thomas, Meisinger, Christa, Peters, Annette, Waldenberger, Melanie, Grallert, Harald, Strauch, Konstantin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4422732/
https://www.ncbi.nlm.nih.gov/pubmed/25945934
http://dx.doi.org/10.1371/journal.pone.0126294
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author Flaquer, Antònia
Rospleszcz, Susanne
Reischl, Eva
Zeilinger, Sonja
Prokisch, Holger
Meitinger, Thomas
Meisinger, Christa
Peters, Annette
Waldenberger, Melanie
Grallert, Harald
Strauch, Konstantin
author_facet Flaquer, Antònia
Rospleszcz, Susanne
Reischl, Eva
Zeilinger, Sonja
Prokisch, Holger
Meitinger, Thomas
Meisinger, Christa
Peters, Annette
Waldenberger, Melanie
Grallert, Harald
Strauch, Konstantin
author_sort Flaquer, Antònia
collection PubMed
description It has been suggested that mitochondrial dysfunction has an influence on lipid metabolism. The fact that mitochondrial defects can be accumulated over time as a normal part of aging may explain why cholesterol levels often are altered with age. To test the hypothesis whether mitochondrial variants are associated with lipid profile (total cholesterol, LDL, HDL, and triglycerides) we analyzed a total number of 978 mitochondrial single nucleotide polymorphisms (mtSNPs) in a sample of 2,815 individuals participating in the population-based KORA F4 study. To assess mtSNP association while taking the presence of heteroplasmy into account we used the raw signal intensity values measured on the microarray and applied linear regression. Ten mtSNPs (mt3285, mt3336, mt5285, mt6591, mt6671, mt9163, mt13855, mt13958, mt14000, and mt14580) were significantly associated with HDL cholesterol and one mtSNP (mt15074) with triglycerides levels. These results highlight the importance of the mitochondrial genome among the factors that contribute to the regulation of lipid levels. Focusing on mitochondrial variants may lead to further insights regarding the underlying physiological mechanisms, or even to the development of innovative treatments. Since this is the first mitochondrial genome-wide association analysis (mtGWAS) for lipid profile, further analyses are needed to follow up on the present findings.
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spelling pubmed-44227322015-05-12 Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels Flaquer, Antònia Rospleszcz, Susanne Reischl, Eva Zeilinger, Sonja Prokisch, Holger Meitinger, Thomas Meisinger, Christa Peters, Annette Waldenberger, Melanie Grallert, Harald Strauch, Konstantin PLoS One Research Article It has been suggested that mitochondrial dysfunction has an influence on lipid metabolism. The fact that mitochondrial defects can be accumulated over time as a normal part of aging may explain why cholesterol levels often are altered with age. To test the hypothesis whether mitochondrial variants are associated with lipid profile (total cholesterol, LDL, HDL, and triglycerides) we analyzed a total number of 978 mitochondrial single nucleotide polymorphisms (mtSNPs) in a sample of 2,815 individuals participating in the population-based KORA F4 study. To assess mtSNP association while taking the presence of heteroplasmy into account we used the raw signal intensity values measured on the microarray and applied linear regression. Ten mtSNPs (mt3285, mt3336, mt5285, mt6591, mt6671, mt9163, mt13855, mt13958, mt14000, and mt14580) were significantly associated with HDL cholesterol and one mtSNP (mt15074) with triglycerides levels. These results highlight the importance of the mitochondrial genome among the factors that contribute to the regulation of lipid levels. Focusing on mitochondrial variants may lead to further insights regarding the underlying physiological mechanisms, or even to the development of innovative treatments. Since this is the first mitochondrial genome-wide association analysis (mtGWAS) for lipid profile, further analyses are needed to follow up on the present findings. Public Library of Science 2015-05-06 /pmc/articles/PMC4422732/ /pubmed/25945934 http://dx.doi.org/10.1371/journal.pone.0126294 Text en © 2015 Flaquer 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
Flaquer, Antònia
Rospleszcz, Susanne
Reischl, Eva
Zeilinger, Sonja
Prokisch, Holger
Meitinger, Thomas
Meisinger, Christa
Peters, Annette
Waldenberger, Melanie
Grallert, Harald
Strauch, Konstantin
Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title_full Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title_fullStr Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title_full_unstemmed Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title_short Mitochondrial GWA Analysis of Lipid Profile Identifies Genetic Variants to Be Associated with HDL Cholesterol and Triglyceride Levels
title_sort mitochondrial gwa analysis of lipid profile identifies genetic variants to be associated with hdl cholesterol and triglyceride levels
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4422732/
https://www.ncbi.nlm.nih.gov/pubmed/25945934
http://dx.doi.org/10.1371/journal.pone.0126294
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