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Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains

Common forms of atherosclerosis involve multiple genetic and environmental factors. While human genome-wide association studies have identified numerous loci contributing to coronary artery disease and its risk factors, these studies are unable to control environmental factors or examine detailed mo...

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Autores principales: Bennett, Brian J., Davis, Richard C., Civelek, Mete, Orozco, Luz, Wu, Judy, Qi, Hannah, Pan, Calvin, Packard, René R. Sevag, Eskin, Eleazar, Yan, Mujing, Kirchgessner, Todd, Wang, Zeneng, Li, Xinmin, Gregory, Jill C., Hazen, Stanley L., Gargalovic, Peter S., Lusis, Aldons J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4687930/
https://www.ncbi.nlm.nih.gov/pubmed/26694027
http://dx.doi.org/10.1371/journal.pgen.1005711
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author Bennett, Brian J.
Davis, Richard C.
Civelek, Mete
Orozco, Luz
Wu, Judy
Qi, Hannah
Pan, Calvin
Packard, René R. Sevag
Eskin, Eleazar
Yan, Mujing
Kirchgessner, Todd
Wang, Zeneng
Li, Xinmin
Gregory, Jill C.
Hazen, Stanley L.
Gargalovic, Peter S.
Lusis, Aldons J.
author_facet Bennett, Brian J.
Davis, Richard C.
Civelek, Mete
Orozco, Luz
Wu, Judy
Qi, Hannah
Pan, Calvin
Packard, René R. Sevag
Eskin, Eleazar
Yan, Mujing
Kirchgessner, Todd
Wang, Zeneng
Li, Xinmin
Gregory, Jill C.
Hazen, Stanley L.
Gargalovic, Peter S.
Lusis, Aldons J.
author_sort Bennett, Brian J.
collection PubMed
description Common forms of atherosclerosis involve multiple genetic and environmental factors. While human genome-wide association studies have identified numerous loci contributing to coronary artery disease and its risk factors, these studies are unable to control environmental factors or examine detailed molecular traits in relevant tissues. We now report a study of natural variations contributing to atherosclerosis and related traits in over 100 inbred strains of mice from the Hybrid Mouse Diversity Panel (HMDP). The mice were made hyperlipidemic by transgenic expression of human apolipoprotein E-Leiden (APOE-Leiden) and human cholesteryl ester transfer protein (CETP). The mice were examined for lesion size and morphology as well as plasma lipid, insulin and glucose levels, and blood cell profiles. A subset of mice was studied for plasma levels of metabolites and cytokines. We also measured global transcript levels in aorta and liver. Finally, the uptake of acetylated LDL by macrophages from HMDP mice was quantitatively examined. Loci contributing to the traits were mapped using association analysis, and relationships among traits were examined using correlation and statistical modeling. A number of conclusions emerged. First, relationships among atherosclerosis and the risk factors in mice resemble those found in humans. Second, a number of trait-loci were identified, including some overlapping with previous human and mouse studies. Third, gene expression data enabled enrichment analysis of pathways contributing to atherosclerosis and prioritization of candidate genes at associated loci in both mice and humans. Fourth, the data provided a number of mechanistic inferences; for example, we detected no association between macrophage uptake of acetylated LDL and atherosclerosis. Fifth, broad sense heritability for atherosclerosis was much larger than narrow sense heritability, indicating an important role for gene-by-gene interactions. Sixth, stepwise linear regression showed that the combined variations in plasma metabolites, including LDL/VLDL-cholesterol, trimethylamine N-oxide (TMAO), arginine, glucose and insulin, account for approximately 30 to 40% of the variation in atherosclerotic lesion area. Overall, our data provide a rich resource for studies of complex interactions underlying atherosclerosis.
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spelling pubmed-46879302015-12-31 Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains Bennett, Brian J. Davis, Richard C. Civelek, Mete Orozco, Luz Wu, Judy Qi, Hannah Pan, Calvin Packard, René R. Sevag Eskin, Eleazar Yan, Mujing Kirchgessner, Todd Wang, Zeneng Li, Xinmin Gregory, Jill C. Hazen, Stanley L. Gargalovic, Peter S. Lusis, Aldons J. PLoS Genet Research Article Common forms of atherosclerosis involve multiple genetic and environmental factors. While human genome-wide association studies have identified numerous loci contributing to coronary artery disease and its risk factors, these studies are unable to control environmental factors or examine detailed molecular traits in relevant tissues. We now report a study of natural variations contributing to atherosclerosis and related traits in over 100 inbred strains of mice from the Hybrid Mouse Diversity Panel (HMDP). The mice were made hyperlipidemic by transgenic expression of human apolipoprotein E-Leiden (APOE-Leiden) and human cholesteryl ester transfer protein (CETP). The mice were examined for lesion size and morphology as well as plasma lipid, insulin and glucose levels, and blood cell profiles. A subset of mice was studied for plasma levels of metabolites and cytokines. We also measured global transcript levels in aorta and liver. Finally, the uptake of acetylated LDL by macrophages from HMDP mice was quantitatively examined. Loci contributing to the traits were mapped using association analysis, and relationships among traits were examined using correlation and statistical modeling. A number of conclusions emerged. First, relationships among atherosclerosis and the risk factors in mice resemble those found in humans. Second, a number of trait-loci were identified, including some overlapping with previous human and mouse studies. Third, gene expression data enabled enrichment analysis of pathways contributing to atherosclerosis and prioritization of candidate genes at associated loci in both mice and humans. Fourth, the data provided a number of mechanistic inferences; for example, we detected no association between macrophage uptake of acetylated LDL and atherosclerosis. Fifth, broad sense heritability for atherosclerosis was much larger than narrow sense heritability, indicating an important role for gene-by-gene interactions. Sixth, stepwise linear regression showed that the combined variations in plasma metabolites, including LDL/VLDL-cholesterol, trimethylamine N-oxide (TMAO), arginine, glucose and insulin, account for approximately 30 to 40% of the variation in atherosclerotic lesion area. Overall, our data provide a rich resource for studies of complex interactions underlying atherosclerosis. Public Library of Science 2015-12-22 /pmc/articles/PMC4687930/ /pubmed/26694027 http://dx.doi.org/10.1371/journal.pgen.1005711 Text en © 2015 Bennett 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
Bennett, Brian J.
Davis, Richard C.
Civelek, Mete
Orozco, Luz
Wu, Judy
Qi, Hannah
Pan, Calvin
Packard, René R. Sevag
Eskin, Eleazar
Yan, Mujing
Kirchgessner, Todd
Wang, Zeneng
Li, Xinmin
Gregory, Jill C.
Hazen, Stanley L.
Gargalovic, Peter S.
Lusis, Aldons J.
Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title_full Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title_fullStr Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title_full_unstemmed Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title_short Genetic Architecture of Atherosclerosis in Mice: A Systems Genetics Analysis of Common Inbred Strains
title_sort genetic architecture of atherosclerosis in mice: a systems genetics analysis of common inbred strains
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4687930/
https://www.ncbi.nlm.nih.gov/pubmed/26694027
http://dx.doi.org/10.1371/journal.pgen.1005711
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