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Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach

BACKGROUND: The link between DNA methylation, obesity, and adiposity-related diseases in the general population remains uncertain. METHODS AND FINDINGS: We conducted an association study of body mass index (BMI) and differential methylation for over 400,000 CpGs assayed by microarray in whole-blood-...

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Autores principales: Mendelson, Michael M., Marioni, Riccardo E., Joehanes, Roby, Liu, Chunyu, Hedman, Åsa K., Aslibekyan, Stella, Demerath, Ellen W., Guan, Weihua, Zhi, Degui, Yao, Chen, Huan, Tianxiao, Willinger, Christine, Chen, Brian, Courchesne, Paul, Multhaup, Michael, Irvin, Marguerite R., Cohain, Ariella, Schadt, Eric E., Grove, Megan L., Bressler, Jan, North, Kari, Sundström, Johan, Gustafsson, Stefan, Shah, Sonia, McRae, Allan F., Harris, Sarah E., Gibson, Jude, Redmond, Paul, Corley, Janie, Murphy, Lee, Starr, John M., Kleinbrink, Erica, Lipovich, Leonard, Visscher, Peter M., Wray, Naomi R., Krauss, Ronald M., Fallin, Daniele, Feinberg, Andrew, Absher, Devin M., Fornage, Myriam, Pankow, James S., Lind, Lars, Fox, Caroline, Ingelsson, Erik, Arnett, Donna K., Boerwinkle, Eric, Liang, Liming, Levy, Daniel, Deary, Ian J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240936/
https://www.ncbi.nlm.nih.gov/pubmed/28095459
http://dx.doi.org/10.1371/journal.pmed.1002215
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author Mendelson, Michael M.
Marioni, Riccardo E.
Joehanes, Roby
Liu, Chunyu
Hedman, Åsa K.
Aslibekyan, Stella
Demerath, Ellen W.
Guan, Weihua
Zhi, Degui
Yao, Chen
Huan, Tianxiao
Willinger, Christine
Chen, Brian
Courchesne, Paul
Multhaup, Michael
Irvin, Marguerite R.
Cohain, Ariella
Schadt, Eric E.
Grove, Megan L.
Bressler, Jan
North, Kari
Sundström, Johan
Gustafsson, Stefan
Shah, Sonia
McRae, Allan F.
Harris, Sarah E.
Gibson, Jude
Redmond, Paul
Corley, Janie
Murphy, Lee
Starr, John M.
Kleinbrink, Erica
Lipovich, Leonard
Visscher, Peter M.
Wray, Naomi R.
Krauss, Ronald M.
Fallin, Daniele
Feinberg, Andrew
Absher, Devin M.
Fornage, Myriam
Pankow, James S.
Lind, Lars
Fox, Caroline
Ingelsson, Erik
Arnett, Donna K.
Boerwinkle, Eric
Liang, Liming
Levy, Daniel
Deary, Ian J.
author_facet Mendelson, Michael M.
Marioni, Riccardo E.
Joehanes, Roby
Liu, Chunyu
Hedman, Åsa K.
Aslibekyan, Stella
Demerath, Ellen W.
Guan, Weihua
Zhi, Degui
Yao, Chen
Huan, Tianxiao
Willinger, Christine
Chen, Brian
Courchesne, Paul
Multhaup, Michael
Irvin, Marguerite R.
Cohain, Ariella
Schadt, Eric E.
Grove, Megan L.
Bressler, Jan
North, Kari
Sundström, Johan
Gustafsson, Stefan
Shah, Sonia
McRae, Allan F.
Harris, Sarah E.
Gibson, Jude
Redmond, Paul
Corley, Janie
Murphy, Lee
Starr, John M.
Kleinbrink, Erica
Lipovich, Leonard
Visscher, Peter M.
Wray, Naomi R.
Krauss, Ronald M.
Fallin, Daniele
Feinberg, Andrew
Absher, Devin M.
Fornage, Myriam
Pankow, James S.
Lind, Lars
Fox, Caroline
Ingelsson, Erik
Arnett, Donna K.
Boerwinkle, Eric
Liang, Liming
Levy, Daniel
Deary, Ian J.
author_sort Mendelson, Michael M.
collection PubMed
description BACKGROUND: The link between DNA methylation, obesity, and adiposity-related diseases in the general population remains uncertain. METHODS AND FINDINGS: We conducted an association study of body mass index (BMI) and differential methylation for over 400,000 CpGs assayed by microarray in whole-blood-derived DNA from 3,743 participants in the Framingham Heart Study and the Lothian Birth Cohorts, with independent replication in three external cohorts of 4,055 participants. We examined variations in whole blood gene expression and conducted Mendelian randomization analyses to investigate the functional and clinical relevance of the findings. We identified novel and previously reported BMI-related differential methylation at 83 CpGs that replicated across cohorts; BMI-related differential methylation was associated with concurrent changes in the expression of genes in lipid metabolism pathways. Genetic instrumental variable analysis of alterations in methylation at one of the 83 replicated CpGs, cg11024682 (intronic to sterol regulatory element binding transcription factor 1 [SREBF1]), demonstrated links to BMI, adiposity-related traits, and coronary artery disease. Independent genetic instruments for expression of SREBF1 supported the findings linking methylation to adiposity and cardiometabolic disease. Methylation at a substantial proportion (16 of 83) of the identified loci was found to be secondary to differences in BMI. However, the cross-sectional nature of the data limits definitive causal determination. CONCLUSIONS: We present robust associations of BMI with differential DNA methylation at numerous loci in blood cells. BMI-related DNA methylation and gene expression provide mechanistic insights into the relationship between DNA methylation, obesity, and adiposity-related diseases.
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spelling pubmed-52409362017-02-06 Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach Mendelson, Michael M. Marioni, Riccardo E. Joehanes, Roby Liu, Chunyu Hedman, Åsa K. Aslibekyan, Stella Demerath, Ellen W. Guan, Weihua Zhi, Degui Yao, Chen Huan, Tianxiao Willinger, Christine Chen, Brian Courchesne, Paul Multhaup, Michael Irvin, Marguerite R. Cohain, Ariella Schadt, Eric E. Grove, Megan L. Bressler, Jan North, Kari Sundström, Johan Gustafsson, Stefan Shah, Sonia McRae, Allan F. Harris, Sarah E. Gibson, Jude Redmond, Paul Corley, Janie Murphy, Lee Starr, John M. Kleinbrink, Erica Lipovich, Leonard Visscher, Peter M. Wray, Naomi R. Krauss, Ronald M. Fallin, Daniele Feinberg, Andrew Absher, Devin M. Fornage, Myriam Pankow, James S. Lind, Lars Fox, Caroline Ingelsson, Erik Arnett, Donna K. Boerwinkle, Eric Liang, Liming Levy, Daniel Deary, Ian J. PLoS Med Research Article BACKGROUND: The link between DNA methylation, obesity, and adiposity-related diseases in the general population remains uncertain. METHODS AND FINDINGS: We conducted an association study of body mass index (BMI) and differential methylation for over 400,000 CpGs assayed by microarray in whole-blood-derived DNA from 3,743 participants in the Framingham Heart Study and the Lothian Birth Cohorts, with independent replication in three external cohorts of 4,055 participants. We examined variations in whole blood gene expression and conducted Mendelian randomization analyses to investigate the functional and clinical relevance of the findings. We identified novel and previously reported BMI-related differential methylation at 83 CpGs that replicated across cohorts; BMI-related differential methylation was associated with concurrent changes in the expression of genes in lipid metabolism pathways. Genetic instrumental variable analysis of alterations in methylation at one of the 83 replicated CpGs, cg11024682 (intronic to sterol regulatory element binding transcription factor 1 [SREBF1]), demonstrated links to BMI, adiposity-related traits, and coronary artery disease. Independent genetic instruments for expression of SREBF1 supported the findings linking methylation to adiposity and cardiometabolic disease. Methylation at a substantial proportion (16 of 83) of the identified loci was found to be secondary to differences in BMI. However, the cross-sectional nature of the data limits definitive causal determination. CONCLUSIONS: We present robust associations of BMI with differential DNA methylation at numerous loci in blood cells. BMI-related DNA methylation and gene expression provide mechanistic insights into the relationship between DNA methylation, obesity, and adiposity-related diseases. Public Library of Science 2017-01-17 /pmc/articles/PMC5240936/ /pubmed/28095459 http://dx.doi.org/10.1371/journal.pmed.1002215 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Mendelson, Michael M.
Marioni, Riccardo E.
Joehanes, Roby
Liu, Chunyu
Hedman, Åsa K.
Aslibekyan, Stella
Demerath, Ellen W.
Guan, Weihua
Zhi, Degui
Yao, Chen
Huan, Tianxiao
Willinger, Christine
Chen, Brian
Courchesne, Paul
Multhaup, Michael
Irvin, Marguerite R.
Cohain, Ariella
Schadt, Eric E.
Grove, Megan L.
Bressler, Jan
North, Kari
Sundström, Johan
Gustafsson, Stefan
Shah, Sonia
McRae, Allan F.
Harris, Sarah E.
Gibson, Jude
Redmond, Paul
Corley, Janie
Murphy, Lee
Starr, John M.
Kleinbrink, Erica
Lipovich, Leonard
Visscher, Peter M.
Wray, Naomi R.
Krauss, Ronald M.
Fallin, Daniele
Feinberg, Andrew
Absher, Devin M.
Fornage, Myriam
Pankow, James S.
Lind, Lars
Fox, Caroline
Ingelsson, Erik
Arnett, Donna K.
Boerwinkle, Eric
Liang, Liming
Levy, Daniel
Deary, Ian J.
Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title_full Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title_fullStr Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title_full_unstemmed Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title_short Association of Body Mass Index with DNA Methylation and Gene Expression in Blood Cells and Relations to Cardiometabolic Disease: A Mendelian Randomization Approach
title_sort association of body mass index with dna methylation and gene expression in blood cells and relations to cardiometabolic disease: a mendelian randomization approach
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240936/
https://www.ncbi.nlm.nih.gov/pubmed/28095459
http://dx.doi.org/10.1371/journal.pmed.1002215
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