4.8 Article

Recessive gene disruptions in autism spectrum disorder

期刊

NATURE GENETICS
卷 51, 期 7, 页码 1092-+

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41588-019-0433-8

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资金

  1. NIH T32 fellowship from the Fundamental Neurobiology Training Grant [5 T32 NS007484-14]
  2. Nancy Lurie Marks Clinical and Research Fellowship Program in Autism
  3. National Institute of Mental Health (NIMH) [MH100233, MH100229, MH100209, MH100239, MH111661, MH111660, MH111662, MH111658]
  4. NIMH [MH097849, RC2MH089952, RO1MH083565]
  5. National Institutes of Health [NCRR 1S10RR028832-01]
  6. MRC/Wellcome Trust Human Developmental Biology Resource [MR/R006237/1]
  7. SFARI Pilot Research Award
  8. Beatrice and Samuel A. Seaver Foundation
  9. [NIH/NIMH R01MH113761]
  10. [NICHD/NHGRI/NIH U19HD077671]
  11. [NIH/NICHD U24HD0938487]
  12. MRC [MR/R006237/1] Funding Source: UKRI

向作者/读者索取更多资源

Autism spectrum disorder (ASD) affects up to 1 in 59 individuals(1). Genome-wide association and large-scale sequencing studies strongly implicate both common variants(2-4) and rare de novo variants(5-10) in ASD. Recessive mutations have also been implicated(11-14) but their contribution remains less well defined. Here we demonstrate an excess of biallelic loss-of-function and damaging missense mutations in a large ASD cohort, corresponding to approximately 5% of total cases, including 10% of females, consistent with a female protective effect. We document biallelic disruption of known or emerging recessive neurodevelopmental genes (CA2, DDHD1,NSUN2, PAH, RARB, ROGDI, SLC1A1, USH2A) as well as other genes not previously implicated in ASD including FEV (FEV transcription factor, ETS family member), which encodes a key regulator of the serotonergic circuitry. Our data refine estimates of the contribution of recessive mutation to ASD and suggest new paths for illuminating previously unknown biological pathways responsible for this condition.

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