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The genetic architecture of the human cerebral cortex

908Citations signalées, ce qui n’est pas une note de qualité
225Institutions déclarées
22Pays d’affiliation déclarés

Rattachement africain : au, us, es, nl, no, se, ie, ca, de, Afrique du Sud, br, gb, jp, ch, sg, cn, nz, fr, qa, is, at, be. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

INTRODUCTION The cerebral cortex underlies our complex cognitive capabilities. Variations in human cortical surface area and thickness are associated with neurological, psychological, and behavioral traits and can be measured in vivo by magnetic resonance imaging (MRI). Studies in model organisms have identified genes that influence cortical structure, but little is known about common genetic variants that affect human cortical structure. RATIONALE To identify genetic variants associated with human cortical structure at both global and regional levels, we conducted a genome-wide association meta-analysis of brain MRI data from 51,665 individuals across 60 cohorts. We analyzed the surface area and average thickness of the whole cortex and 34 cortical regions with known functional specializations. RESULTS We identified 369 nominally genome-wide significant loci ( P < 5 × 10 −8 ) associated with cortical structure in a discovery sample of 33,992 participants of European ancestry. Of the 360 loci for which replication data were available, 241 loci influencing surface area and 66 influencing thickness remained significant after replication, with 237 loci passing multiple testing correction ( P < 8.3 × 10 −10 ; 187 influencing surface area and 50 influencing thickness). Common genetic variants explained 34% (SE = 3%) of the variation in total surface area and 26% (SE = 2%) in average thickness; surface area and thickness showed a negative genetic correlation ( r G = −0.32, SE = 0.05, P = 6.5 × 10 −12 ), which suggests that genetic influences have opposing effects on surface area and thickness. Bioinformatic analyses showed that total surface area is influenced by genetic variants that alter gene regulatory activity in neural progenitor cells during fetal development. By contrast, average thickness is influenced by active regulatory elements in adult brain samples, which may reflect processes that occur after mid-fetal development, such as myelination, branching, or pruning. When considered together, these results support the radial unit hypothesis that different developmental mechanisms promote surface area expansion and increases in thickness. To identify specific genetic influences on individual cortical regions, we controlled for global measures (total surface area or average thickness) in the regional analyses. After multiple testing correction, we identified 175 loci that influence regional surface area and 46 that influence regional thickness. Loci that affect regional surface area cluster near genes involved in the Wnt signaling pathway, which is known to influence areal identity. We observed significant positive genetic correlations and evidence of bidirectional causation of total surface area with both general cognitive functioning and educational attainment. We found additional positive genetic correlations between total surface area and Parkinson’s disease but did not find evidence of causation. Negative genetic correlations were evident between total surface area and insomnia, attention deficit hyperactivity disorder, depressive symptoms, major depressive disorder, and neuroticism. CONCLUSION This large-scale collaborative work enhances our understanding of the genetic architecture of the human cerebral cortex and its regional patterning. The highly polygenic architecture of the cortex suggests that distinct genes are involved in the development of specific cortical areas. Moreover, we find evidence that brain structure is a key phenotype along the causal pathway that leads from genetic variation to differences in general cognitive function. Identifying genetic influences on human cortical structure. ( A ) Measurement of cortical surface area and thickness from MRI. ( B ) Genomic locations of common genetic variants that influence global and regional cortical structure. ( C ) Our results support the radial unit hypothesis that the expansion of cortical surface area is driven by proliferating neural progenitor cells. ( D ) Cortical surface area shows genetic correlation with psychiatric and cognitive traits. Error bars indicate SE. IMAGE CREDITS: (A) K. COURTNEY; (C) M. R. GLASS

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
The genetic architecture of the human cerebral cortex
Date Crossref
20/03/2020
Éditeur
American Association for the Advancement of Science (AAAS)
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

QIMR Berghofer Medical Research InstituteUniversity of Southern CaliforniaQueensland University of TechnologyThe University of QueenslandUniversidad de MurciaRadboud University NijmegenRadboud University Medical CenterUniversity of California, Los AngelesUniversity of North Carolina at Chapel HillOslo University HospitalUniversity of OsloKarolinska InstitutetDiakonhjemmet HospitalRoyal College of Surgeons in IrelandYale UniversityThe University of Texas Rio Grande ValleyUmeå UniversityMurdoch UniversityDuke Medical CenterUniversity of Newcastle AustraliaUniversity of TorontoHospital for Sick ChildrenSickKids FoundationUtrecht UniversityUniversity Medical Center UtrechtUniversität GreifswaldUniversity of MünsterOllscoil na Gaillimhe – University of GalwayDouglas Mental Health University InstituteMcGill UniversityLieber Institute for Brain DevelopmentUniversity of California San DiegoUniversity of Cape TownUniversidade Estadual de Campinas (UNICAMP)Brazilian Institute of Neuroscience and NeurotechnologyAmsterdam NeuroscienceAmsterdam University Medical CentersVrije Universiteit AmsterdamTechnische Universität DresdenInstitute of Infectious Disease and Molecular MedicineHumboldt-Universität zu BerlinFreie Universität BerlinCharité - Universitätsmedizin BerlinCardiff UniversitySan Francisco VA Medical CenterNational Institute for Physiological SciencesMassachusetts General HospitalAthinoula A. Martinos Center for Biomedical ImagingUniversity of BergenUNSW SydneyNeuroscience Research AustraliaIllinois Institute of TechnologyUniversity of EdinburghDurham VA Medical CenterUniversity of BaselUniversity Hospital of BaselLife & Brain (Germany)Cognitive Research (United States)Institute of Mental HealthMax Planck Institute of PsychiatryUniversity of BonnUniversity Hospital BonnFujita Health UniversityUniversitätsmedizin GreifswaldKing's College LondonFudan UniversityShanghai Center for Brain Science and Brain-Inspired TechnologyForschungszentrum JülichJülich Aachen Research AllianceRWTH Aachen UniversityTokyo Institute of TechnologyUniversity of SussexLife Science InstituteHoya (Japan)Montreal Neurological Institute and HospitalQueen Mary University of LondonGenomics EnglandNational Hospital for Neurology and NeurosurgeryUniversity College LondonBrigham and Women's HospitalBeth Israel Deaconess Medical CenterHarvard UniversityMassachusetts Mental Health CenterThe University of OsakaZimmer Biomet (Germany)Duke UniversityHeidelberg UniversityUniversity Hospital HeidelbergBernstein Center for Computational Neuroscience GöttingenUniversity of GöttingenGenome Institute of SingaporeUniversity of California, IrvineHartford HospitalNew Zealand Brain Research InstituteBrain Research New ZealandUniversity of OtagoGGZ inGeestHelmholtz MunichHeinrich Heine University DüsseldorfMunich Cluster for Systems NeurologyAstellas Pharma (Japan)Indiana University School of MedicineIndiana University – Purdue University IndianapolisCommissariat à l'Énergie Atomique et aux Énergies AlternativesUniversité Paris-SaclayCEA Paris-SaclaySunnaas sykehusMax Planck Institute for PsycholinguisticsThe University of MelbourneOrygen Youth HealthUniversity of PennsylvaniaHolland Bloorview Kids Rehabilitation HospitalDonders Centre for Cognitive NeuroimagingCentre for Healthy Brain AgeingCentro de Investigación Biomédica en Red de Salud MentalMarqués de Valdecilla University HospitalInstituto de Investigación Marqués de ValdecillaMind Research NetworkGeorgia State UniversityUniversity of VermontMaastricht UniversityErasmus MC - Sophia Children’s HospitalUniversity Medical Center GroningenUniversity of GroningenMRC Integrative Epidemiology UnitUniversity of BathUK Dementia Research InstituteCentral Institute of Mental HealthGerman Center for Neurodegenerative DiseasesUniversity of WürzburgInsermInstitut des Neurosciences Paris-SaclayCognitive Neuroimaging LabUniversidad de CantabriaChild Development CenterVA San Diego Healthcare SystemAvera HealthPhilipps University of MarburgSt. James's HospitalUniversity of NottinghamBroad InstituteUniversity of IowaHolsboerMaschmeyer NeuroChemie (Germany)Mayo Clinic in ArizonaBrain (Germany)University of MinnesotaGGNetUniversity of California, San FranciscoSan Francisco VA Health Care SystemJohns Hopkins UniversitySaint John's Health CenterPacific Heart InstituteGerman Centre for Cardiovascular ResearchSorbonne UniversitéAssistance Publique – Hôpitaux de ParisPitié-Salpêtrière HospitalUniversity of CalgaryHunter Medical Research InstituteHaukeland University HospitalTrinity College DublinErasmus University RotterdamErasmus MCUniversity of WashingtonUniversité de BordeauxCentre Hospitalier Universitaire de BordeauxBordeaux Population HealthUniversity of California, DavisThe University of Texas Health Science Center at HoustonUniversity of IcelandIcelandic Heart AssociationMedical University of GrazNational Institute on AgingCentre National de la Recherche ScientifiqueInstitut des Maladies NeurodégénérativesJackson Memorial HospitalUniversity of Mississippi Medical CenterBoston UniversityThe University of Texas at San Antonio Health Science CenterInstitute for Neurodegenerative DisordersFramingham Heart StudyNational Ageing Research InstituteCanterbury District Health BoardFlorey Institute of Neuroscience and Mental HealthDurham VA Health Care SystemDementia Collaborative Research CentresMaastricht University Medical CentreMaastro ClinicCenter for Pain and the BrainDutch Expert Centre for ScreeningKarakterUniversity of New MexicoSchizophrenia Research InstituteGeorgia Institute of TechnologyEmory UniversityCenter for Translational Research in Neuroimaging and Data ScienceMonash UniversityHospital Universitario Virgen del RocíoUniversity of CanterburyUniversité Libre de BruxellesErasmus HospitalBoston Children's HospitalNorwegian University of Science and TechnologySt Olav's University HospitalNational Center of Neurology and PsychiatryNational Institute of Mental HealthUniversity of Maryland, BaltimoreThe University of Texas MD Anderson Cancer CenterIcahn School of Medicine at Mount SinaiThe University of SydneyHunter New England Local Health DistrictQueensland Centre for Mental Health ResearchAmsterdam UMC Location University of AmsterdamEmma KinderziekenhuisSunshine HospitalMIND Research InstituteChild Mind InstituteBloorview Research InstitutePrince of Wales HospitalLeibniz Institute for NeurobiologyJohn Hunter HospitalEpilepsy SocietyLeiden University Medical CenterJohns Hopkins MedicineNational Imaging FacilityNational Neuroscience Institute

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Les sujets associés

Genetic Associations and EpidemiologyEpigenetics and DNA MethylationBioinformatics and Genomic Networks

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