학술논문

DNA Methylation Analysis Identifies Loci for Blood Pressure Regulation
Document Type
article
Author
Richard, Melissa AHuan, TianxiaoLigthart, SymenGondalia, RahulJhun, Min ABrody, Jennifer AIrvin, Marguerite RMarioni, RiccardoShen, JinchengTsai, Pei-ChienMontasser, May EJia, YuchengSyme, CatrionaSalfati, Elias LBoerwinkle, EricGuan, WeihuaMosley, Thomas HBressler, JanMorrison, Alanna CLiu, ChunyuMendelson, Michael MUitterlinden, André Gvan Meurs, Joyce BConsortium, BIOSHeijmans, Bastiaan THoen, Peter AC ’tvan Meurs, JoyceIsaacs, AaronJansen, RickFranke, LudeBoomsma, Dorret IPool, Renévan Dongen, JennyHottenga, Jouke Jvan Greevenbroek, Marleen MJStehouwer, Coen DAvan der Kallen, Carla JHSchalkwijk, Casper GWijmenga, CiscaZhernakova, AlexandraTigchelaar, Ettje FSlagboom, P ElineBeekman, MarianDeelen, Jorisvan Heemst, DianaVeldink, Jan Hvan den Berg, Leonard Hvan Duijn, Cornelia MHofman, AlbertJhamai, P MilaVerbiest, MichaelSuchiman, H Eka DVerkerk, Marijnvan der Breggen, Ruudvan Rooij, JeroenLakenberg, NicoMei, Hailiangvan Iterson, Maartenvan Galen, MichielBot, Janvan ’t Hof, PeterDeelen, PatrickNooren, IreneMoed, MatthijsVermaat, MartijnZhernakova, Dasha VLuijk, RenéBonder, Marc Janvan Dijk, FreerkArindrarto, WibowoKielbasa, Szymon MSwertz, Morris Avan Zwet, Erik WFranco, Oscar HZhang, GuoshengLi, YunStewart, James DBis, Joshua CPsaty, Bruce MChen, Yii-Der IdaKardia, Sharon LRZhao, WeiTurner, Stephen TAbsher, DevinAslibekyan, StellaStarr, John MMcRae, Allan FHou, LifangJust, Allan CSchwartz, Joel DVokonas, Pantel SMenni, CristinaSpector, Tim DShuldiner, AlanDamcott, Coleen MRotter, Jerome IPalmas, WalterLiu, YongmeiPaus, Tomáš
Source
American Journal of Human Genetics. 101(6)
Subject
Epidemiology
Biological Sciences
Health Sciences
Genetics
Human Genome
Biotechnology
Aetiology
2.1 Biological and endogenous factors
Aged
Blood Pressure
CpG Islands
Cross-Sectional Studies
DNA Methylation
Epigenesis
Genetic
Genetic Variation
Genome-Wide Association Study
Humans
Mendelian Randomization Analysis
Middle Aged
Nerve Tissue Proteins
Quantitative Trait Loci
Tetraspanins
BIOS Consortium
DNA methylation
Mendelian randomization
blood pressure
epigenome-wide association study
gene expression
sequence variation
Medical and Health Sciences
Genetics & Heredity
Biological sciences
Biomedical and clinical sciences
Health sciences
Language
Abstract
Genome-wide association studies have identified hundreds of genetic variants associated with blood pressure (BP), but sequence variation accounts for a small fraction of the phenotypic variance. Epigenetic changes may alter the expression of genes involved in BP regulation and explain part of the missing heritability. We therefore conducted a two-stage meta-analysis of the cross-sectional associations of systolic and diastolic BP with blood-derived genome-wide DNA methylation measured on the Infinium HumanMethylation450 BeadChip in 17,010 individuals of European, African American, and Hispanic ancestry. Of 31 discovery-stage cytosine-phosphate-guanine (CpG) dinucleotides, 13 replicated after Bonferroni correction (discovery: N = 9,828, p < 1.0 × 10-7; replication: N = 7,182, p  30%) and independent of known BP genetic variants, explaining an additional 1.4% and 2.0% of the interindividual variation in systolic and diastolic BP, respectively. Bidirectional Mendelian randomization among up to 4,513 individuals of European ancestry from 4 cohorts suggested that methylation at cg08035323 (TAF1B-YWHAQ) influences BP, while BP influences methylation at cg00533891 (ZMIZ1), cg00574958 (CPT1A), and cg02711608 (SLC1A5). Gene expression analyses further identified six genes (TSPAN2, SLC7A11, UNC93B1, CPT1A, PTMS, and LPCAT3) with evidence of triangular associations between methylation, gene expression, and BP. Additional integrative Mendelian randomization analyses of gene expression and DNA methylation suggested that the expression of TSPAN2 is a putative mediator of association between DNA methylation at cg23999170 and BP. These findings suggest that heritable DNA methylation plays a role in regulating BP independently of previously known genetic variants.