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De novo germline and postzygotic mutations in AKT3, PIK3R2 and PIK3CA cause a spectrum of related megalencephaly syndromes

  • Jean Baptiste Rivière
  • , Ghayda M. Mirzaa
  • , Brian J. O'Roak
  • , Margaret Beddaoui
  • , Diana Alcantara
  • , Robert L. Conway
  • , Judith St-Onge
  • , Jeremy A. Schwartzentruber
  • , Karen W. Gripp
  • , Sarah M. Nikkel
  • , Thea Worthylake
  • , Christopher T. Sullivan
  • , Thomas R. Ward
  • , Hailly E. Butler
  • , Nancy A. Kramer
  • , Beate Albrecht
  • , Christine M. Armour
  • , Linlea Armstrong
  • , Oana Caluseriu
  • , Cheryl Cytrynbaum
  • Beth A. Drolet, A. Micheil Innes, Julie L. Lauzon, Angela E. Lin, Grazia M.S. Mancini, Wendy S. Meschino, James D. Reggin, Anand K. Saggar, Tally Lerman-Sagie, Gã Khan Uyanik, Rosanna Weksberg, Birgit Zirn, Chandree L. Beaulieu, Jacek Majewski, Dennis E. Bulman, Mark O'Driscoll, Jay Shendure, John M. Graham, Kym M. Boycott, William B. Dobyns
  • Seattle Children's
  • The University of Chicago
  • University of Washington
  • University of Ottawa
  • University of Sussex
  • Michigan State University
  • McGill University
  • Cedars-Sinai Medical Center
  • University of Duisburg-Essen
  • Queen's University Kingston
  • University of British Columbia
  • University of Calgary
  • University of Toronto
  • Medical College of Wisconsin
  • Massachusetts General Hospital
  • Erasmus University Rotterdam
  • North York General Hospital
  • Providence Sacred Heart Medical Center
  • St George's Hospital
  • Edith Wolfson Medical Center Israel
  • University of Hamburg
  • University of Göttingen

Producción científicarevisión exhaustiva

644 Citas (Scopus)

Resumen

Megalencephaly-capillary malformation (MCAP) and megalencephaly- polymicrogyria-polydactyly-hydrocephalus (MPPH) syndromes are sporadic overgrowth disorders associated with markedly enlarged brain size and other recognizable features. We performed exome sequencing in 3 families with MCAP or MPPH, and our initial observations were confirmed in exomes from 7 individuals with MCAP and 174 control individuals, as well as in 40 additional subjects with megalencephaly, using a combination of Sanger sequencing, restriction enzyme assays and targeted deep sequencing. We identified de novo germline or postzygotic mutations in three core components of the phosphatidylinositol 3-kinase (PI3K)-AKT pathway. These include 2 mutations in AKT3, 1 recurrent mutation in PIK3R2 in 11 unrelated families with MPPH and 15 mostly postzygotic mutations in PIK3CA in 23 individuals with MCAP and 1 with MPPH. Our data highlight the central role of PI3K-AKT signaling in vascular, limb and brain development and emphasize the power of massively parallel sequencing in a challenging context of phenotypic and genetic heterogeneity combined with postzygotic mosaicism.

Idioma originalEnglish
Páginas (desde-hasta)934-940
Número de páginas7
PublicaciónNature Genetics
Volumen44
N.º8
DOI
EstadoPublished - ago 2012

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