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De novo gene disruptions in children on the autistic spectrum
Authors:Iossifov Ivan  Ronemus Michael  Levy Dan  Wang Zihua  Hakker Inessa  Rosenbaum Julie  Yamrom Boris  Lee Yoon-Ha  Narzisi Giuseppe  Leotta Anthony  Kendall Jude  Grabowska Ewa  Ma Beicong  Marks Steven  Rodgers Linda  Stepansky Asya  Troge Jennifer  Andrews Peter  Bekritsky Mitchell  Pradhan Kith  Ghiban Elena  Kramer Melissa  Parla Jennifer  Demeter Ryan  Fulton Lucinda L  Fulton Robert S  Magrini Vincent J  Ye Kenny  Darnell Jennifer C  Darnell Robert B  Mardis Elaine R  Wilson Richard K  Schatz Michael C  McCombie W Richard  Wigler Michael
Affiliation:Cold Spring Harbor Laboratory, 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.
Abstract:
Exome sequencing of 343 families, each with a single child on the autism spectrum and at least one unaffected sibling, reveal de novo small indels and point substitutions, which come mostly from the paternal line in an age-dependent manner. We do not see significantly greater numbers of de novo missense mutations in affected versus unaffected children, but gene-disrupting mutations (nonsense, splice site, and frame shifts) are twice as frequent, 59 to 28. Based on this differential and the number of recurrent and total targets of gene disruption found in our and similar studies, we estimate between 350 and 400 autism susceptibility genes. Many of the disrupted genes in these studies are associated with the?fragile X protein, FMRP, reinforcing links between autism and synaptic plasticity. We find FMRP-associated genes are under greater purifying selection than the remainder of genes and suggest they are especially dosage-sensitive targets of cognitive disorders.
Keywords:
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