학술논문

Multiethnic Genome-Wide Association Study of Cerebral White Matter Hyperintensities on MRI
Document Type
article
Author
Verhaaren, Benjamin FJDebette, StéphanieBis, Joshua CSmith, Jennifer AIkram, M KamranAdams, Hieab HBeecham, Ashley HRajan, Kumar BLopez, Lorna MBarral, Sandravan Buchem, Mark Avan der Grond, JeroenSmith, Albert VHegenscheid, KatrinAggarwal, Neelum Tde Andrade, MarizaAtkinson, Elizabeth JBeekman, MarianBeiser, Alexa SBlanton, Susan HBoerwinkle, EricBrickman, Adam MBryan, R NickChauhan, GaneshChen, Christopher PLHChouraki, Vincentde Craen, Anton JMCrivello, FabriceDeary, Ian JDeelen, JorisDe Jager, Philip LDufouil, CaroleElkind, Mitchell SVEvans, Denis AFreudenberger, PaulGottesman, Rebecca FGuðnason, VilmundurHabes, MohamadHeckbert, Susan RHeiss, GerardoHilal, SaimaHofer, EdithHofman, AlbertIbrahim-Verbaas, Carla AKnopman, David SLewis, Cora ELiao, JieminLiewald, David CMLuciano, Michellevan der Lugt, AadMartinez, Oliver OMayeux, RichardMazoyer, BernardNalls, MikeNauck, MatthiasNiessen, Wiro JOostra, Ben APsaty, Bruce MRice, Kenneth MRotter, Jerome Ivon Sarnowski, BettinaSchmidt, HelenaSchreiner, Pamela JSchuur, MaaikeSidney, Stephen SSigurdsson, SigurdurSlagboom, P ElineStott, David JMvan Swieten, John CTeumer, AlexanderTöglhofer, Anna MariaTraylor, MatthewTrompet, StellaTurner, Stephen TTzourio, ChristopheUh, Hae-WonUitterlinden, André GVernooij, Meike WWang, Jing JWong, Tien YWardlaw, Joanna MWindham, B GwenWittfeld, KatharinaWolf, ChristianeWright, Clinton BYang, QiongZhao, WeiZijdenbos, AlexJukema, J WouterSacco, Ralph LKardia, Sharon LRAmouyel, PhilippeMosley, Thomas HLongstreth, WTDeCarli, Charles Cvan Duijn, Cornelia MSchmidt, ReinholdLauner, Lenore JGrabe, Hans JSeshadri, Sudha S
Source
Circulation Genomic and Precision Medicine. 8(2)
Subject
Aging
Brain Disorders
Neurodegenerative
Alzheimer's Disease including Alzheimer's Disease Related Dementias (AD/ADRD)
Biotechnology
Human Genome
Genetics
Acquired Cognitive Impairment
Clinical Research
Dementia
Alzheimer's Disease
Prevention
Stroke
Neurosciences
Aetiology
2.1 Biological and endogenous factors
Aged
Aged
80 and over
Chromosomes
Human
Female
Genetic Loci
Genome-Wide Association Study
Humans
Male
Meta-Analysis as Topic
Middle Aged
Models
Genetic
Racial Groups
White Matter
cerebral small vessel diseases
cerebrovascular disorders
genome-wide association study
hypertension
leukoencephalopathies
polymorphisms
single nucleotide
Medical Biotechnology
Cardiorespiratory Medicine and Haematology
Cardiovascular System & Hematology
Language
Abstract
BackgroundThe burden of cerebral white matter hyperintensities (WMH) is associated with an increased risk of stroke, dementia, and death. WMH are highly heritable, but their genetic underpinnings are incompletely characterized. To identify novel genetic variants influencing WMH burden, we conducted a meta-analysis of multiethnic genome-wide association studies.Methods and resultsWe included 21 079 middle-aged to elderly individuals from 29 population-based cohorts, who were free of dementia and stroke and were of European (n=17 936), African (n=1943), Hispanic (n=795), and Asian (n=405) descent. WMH burden was quantified on MRI either by a validated automated segmentation method or a validated visual grading scale. Genotype data in each study were imputed to the 1000 Genomes reference. Within each ethnic group, we investigated the relationship between each single-nucleotide polymorphism and WMH burden using a linear regression model adjusted for age, sex, intracranial volume, and principal components of ancestry. A meta-analysis was conducted for each ethnicity separately and for the combined sample. In the European descent samples, we confirmed a previously known locus on chr17q25 (P=2.7×10(-19)) and identified novel loci on chr10q24 (P=1.6×10(-9)) and chr2p21 (P=4.4×10(-8)). In the multiethnic meta-analysis, we identified 2 additional loci, on chr1q22 (P=2.0×10(-8)) and chr2p16 (P=1.5×10(-8)). The novel loci contained genes that have been implicated in Alzheimer disease (chr2p21 and chr10q24), intracerebral hemorrhage (chr1q22), neuroinflammatory diseases (chr2p21), and glioma (chr10q24 and chr2p16).ConclusionsWe identified 4 novel genetic loci that implicate inflammatory and glial proliferative pathways in the development of WMH in addition to previously proposed ischemic mechanisms.