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Rare loss-of-function variants in SETD1A are associated with schizophrenia and developmental disorders.

Tarjinder SinghMitja I KurkiDavid CurtisShaun M PurcellLucy CrooksJeremy McRaeJaana SuvisaariHimanshu ChhedaDouglas H R BlackwoodGerome BreenOlli PietiläinenSebastian S GeretyMuhammad AyubMoira BlythTrevor ColeDavid CollierEve L CoomberNick CraddockMark J DalyJohn DaneshMarta DiFortiAlison FosterNelson A FreimerDaniel GeschwindMandy JohnstoneShelagh JossGeorg KirovJarmo KörkköOuti KuisminPeter A HolmansChristina M HultmanConrad IyegbeJouko LönnqvistMinna MännikköSteve A McCarrollPeter McGuffinAndrew M McIntoshAndrew McQuillinJukka S MoilanenCarmel MooreRobin M MurrayRuth Newbury-EcobWillem OuwehandTiina PaunioElena PrigmoreElliott ReesDavid RobertsJennifer SambrookPamela SklarDavid St ClairJuha VeijolaJames T R WaltersHywel J Williamsnull nullnull nullnull nullnull nullPatrick F SullivanMatthew E HurlesMichael C O'DonovanAarno PalotieMichael J OwenJeffrey C Barrett
Published in: Nature neuroscience (2016)
By analyzing the whole-exome sequences of 4,264 schizophrenia cases, 9,343 controls and 1,077 trios, we identified a genome-wide significant association between rare loss-of-function (LoF) variants in SETD1A and risk for schizophrenia (P = 3.3 × 10(-9)). We found only two heterozygous LoF variants in 45,376 exomes from individuals without a neuropsychiatric diagnosis, indicating that SETD1A is substantially depleted of LoF variants in the general population. Seven of the ten individuals with schizophrenia carrying SETD1A LoF variants also had learning difficulties. We further identified four SETD1A LoF carriers among 4,281 children with severe developmental disorders and two more carriers in an independent sample of 5,720 Finnish exomes, both with notable neuropsychiatric phenotypes. Together, our observations indicate that LoF variants in SETD1A cause a range of neurodevelopmental disorders, including schizophrenia. Combining these data with previous common variant evidence, we suggest that epigenetic dysregulation, specifically in the histone H3K4 methylation pathway, is an important mechanism in the pathogenesis of schizophrenia.
Keyphrases
  • bipolar disorder
  • copy number
  • genome wide
  • dna methylation
  • young adults
  • machine learning
  • big data
  • artificial intelligence
  • data analysis