학술논문

Novel genetic loci underlying human intracranial volume identified through genome-wide association
Document Type
article
Author
Adams, Hieab HHHibar, Derrek PChouraki, VincentStein, Jason LNyquist, Paul ARentería, Miguel ETrompet, StellaArias-Vasquez, AlejandroSeshadri, SudhaDesrivières, SylvaneBeecham, Ashley HJahanshad, NedaWittfeld, KatharinaVan der Lee, Sven JAbramovic, LucijaAlhusaini, SaudAmin, NajafAndersson, MicaelArfanakis, KonstantinosAribisala, Benjamin SArmstrong, Nicola JAthanasiu, LaviniaAxelsson, TomasBeiser, AlexaBernard, ManonBis, Joshua CBlanken, Laura MEBlanton, Susan HBohlken, Marc MBoks, Marco PBralten, JanitaBrickman, Adam MCarmichael, OwenChakravarty, M MallarChauhan, GaneshChen, QiangChing, Christopher RKCuellar-Partida, GabrielBraber, Anouk DenDoan, Nhat TrungEhrlich, StefanFilippi, IrinaGe, TianGiddaluru, SudheerGoldman, Aaron LGottesman, Rebecca FGreven, Corina UGrimm, OliverGriswold, Michael EGuadalupe, TulioHass, JohannaHaukvik, Unn KHilal, SaimaHofer, EdithHoehn, DavidHolmes, Avram JHoogman, MartineJanowitz, DeborahJia, TianyeKasperaviciute, DaliaKim, SungeunKlein, MariekeKraemer, BerndLee, Phil HLiao, JieminLiewald, David CMLopez, Lorna MLuciano, MichelleMacare, ChristineMarquand, AndreMatarin, MarMather, Karen AMattheisen, ManuelMazoyer, BernardMcKay, David RMcWhirter, RebekahMilaneschi, YuriMirza-Schreiber, NazaninMuetzel, Ryan LManiega, Susana MuñozNho, KwangsikNugent, Allison CLoohuis, Loes M OldeOosterlaan, JaapPapmeyer, MartinaPappa, IrenePirpamer, LukasPudas, SaraPütz, BennoRajan, Kumar BRamasamy, AdaikalavanRichards, Jennifer SRisacher, Shannon LRoiz-Santiañez, RobertoRommelse, NandaRose, Emma JRoyle, Natalie ARundek, TatjanaSämann, Philipp GSatizabal, Claudia L
Source
Nature Neuroscience. 19(12)
Subject
Biological Psychology
Biomedical and Clinical Sciences
Neurosciences
Psychology
Clinical Research
Brain Disorders
Clinical Trials and Supportive Activities
Aging
Biotechnology
Genetics
Human Genome
Aetiology
2.1 Biological and endogenous factors
Neurological
Brain
Cognition
Genetic Loci
Genetic Predisposition to Disease
Genome-Wide Association Study
Humans
Oncogene Protein v-akt
Parkinson Disease
Phenotype
Phosphatidylinositol 3-Kinases
Polymorphism
Single Nucleotide
White People
Cognitive Sciences
Neurology & Neurosurgery
Biological psychology
Language
Abstract
Intracranial volume reflects the maximally attained brain size during development, and remains stable with loss of tissue in late life. It is highly heritable, but the underlying genes remain largely undetermined. In a genome-wide association study of 32,438 adults, we discovered five previously unknown loci for intracranial volume and confirmed two known signals. Four of the loci were also associated with adult human stature, but these remained associated with intracranial volume after adjusting for height. We found a high genetic correlation with child head circumference (ρgenetic = 0.748), which indicates a similar genetic background and allowed us to identify four additional loci through meta-analysis (Ncombined = 37,345). Variants for intracranial volume were also related to childhood and adult cognitive function, and Parkinson's disease, and were enriched near genes involved in growth pathways, including PI3K-AKT signaling. These findings identify the biological underpinnings of intracranial volume and their link to physiological and pathological traits.