Identification of common genetic risk variants for autism spectrum disorder

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Pysyväisosoite

http://hdl.handle.net/10138/313330

Lähdeviite

Psychiat Genomics Consortium , BUPGEN , 23andMe Res Team , Grove , J , Ripke , S , Als , T D , Palotie , A & Daly , M J 2019 , ' Identification of common genetic risk variants for autism spectrum disorder ' , Nature Genetics , vol. 51 , no. 3 , pp. 431-+ . https://doi.org/10.1038/s41588-019-0344-8

Julkaisun nimi: Identification of common genetic risk variants for autism spectrum disorder
Tekijä: Psychiat Genomics Consortium; BUPGEN; 23andMe Res Team; Grove, Jakob; Ripke, Stephan; Als, Thomas D.; Palotie, Aarno; Daly, Mark J.
Tekijän organisaatio: Aarno Palotie / Principal Investigator
Institute for Molecular Medicine Finland
Genomics of Neurological and Neuropsychiatric Disorders
Päiväys: 2019-03
Kieli: eng
Sivumäärä: 16
Kuuluu julkaisusarjaan: Nature Genetics
ISSN: 1061-4036
DOI-tunniste: https://doi.org/10.1038/s41588-019-0344-8
URI: http://hdl.handle.net/10138/313330
Tiivistelmä: Autism spectrum disorder (ASD) is a highly heritable and heterogeneous group of neurodevelopmental phenotypes diagnosed in more than 1% of children. Common genetic variants contribute substantially to ASD susceptibility, but to date no individual variants have been robustly associated with ASD. With a marked sample-size increase from a unique Danish population resource, we report a genome-wide association meta-analysis of 18,381 individuals with ASD and 27,969 controls that identified five genome-wide-significant loci. Leveraging GWAS results from three phenotypes with significantly overlapping genetic architectures (schizophrenia, major depression, and educational attainment), we identified seven additional loci shared with other traits at equally strict significance levels. Dissecting the polygenic architecture, we found both quantitative and qualitative polygenic heterogeneity across ASD subtypes. These results highlight biological insights, particularly relating to neuronal function and corticogenesis, and establish that GWAS performed at scale will be much more productive in the near term in ASD.
Avainsanat: GENOME-WIDE ASSOCIATION
SIMONS SIMPLEX COLLECTION
LD SCORE REGRESSION
DE-NOVO
SYNAPTIC PLASTICITY
NEURITE OUTGROWTH
CELL-SURFACE
LOCI
HERITABILITY
METAANALYSIS
3111 Biomedicine
1184 Genetics, developmental biology, physiology
Vertaisarvioitu: Kyllä
Tekijänoikeustiedot: unspecified
Pääsyrajoitteet: openAccess
Rinnakkaistallennettu versio: publishedVersion


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