• Title of article

    Spatial and Temporal Mapping of De Novo Mutations in Schizophrenia to a Fetal Prefrontal Cortical Network

  • Author/Authors

    Suleyman Gulsuner، نويسنده , , Tom Walsh، نويسنده , , Amanda C. Watts، نويسنده , , Ming K. Lee، نويسنده , , Anne M. Thornton، نويسنده , , Silvia Casadei، نويسنده , , Caitlin Rippey، نويسنده , , Hashem Shahin، نويسنده , , Consortium on the Genetics of Schizophrenia (COGS)، نويسنده , , PAARTNERS Study Group، نويسنده , , Vishwajit L. Nimgaonkar، نويسنده , , Rodney C.P. Go، نويسنده , , Robert M. Savage، نويسنده , , Neal R. Swerdlow، نويسنده , , Raquel E. Gur، نويسنده , , David L. Braff، نويسنده , , Mary-Claire King، نويسنده , , Jon M. McClellan، نويسنده ,

  • Issue Information
    هفته نامه با شماره پیاپی سال 2013
  • Pages
    12
  • From page
    518
  • To page
    529
  • Abstract
    Genes disrupted in schizophrenia may be revealed by de novo mutations in affected persons from otherwise healthy families. Furthermore, during normal brain development, genes are expressed in patterns specific to developmental stage and neuroanatomical structure. We identified de novo mutations in persons with schizophrenia and then mapped the responsible genes onto transcriptome profiles of normal human brain tissues from age 13 weeks gestation to adulthood. In the dorsolateral and ventrolateral prefrontal cortex during fetal development, genes harboring damaging de novo mutations in schizophrenia formed a network significantly enriched for transcriptional coexpression and protein interaction. The 50 genes in the network function in neuronal migration, synaptic transmission, signaling, transcriptional regulation, and transport. These results suggest that disruptions of fetal prefrontal cortical neurogenesis are critical to the pathophysiology of schizophrenia. These results also support the feasibility of integrating genomic and transcriptome analyses to map critical neurodevelopmental processes in time and space in the brain.
  • Journal title
    CELL
  • Serial Year
    2013
  • Journal title
    CELL
  • Record number

    1021828