TY - JOUR
T1 - PIK3CA-associated developmental disorders exhibit distinct classes of mutations with variable expression and tissue distribution
AU - University of Washington Center for Mendelian Genomics
AU - Mirzaa, Ghayda
AU - Timms, Andrew E.
AU - Conti, Valerio
AU - Boyle, Evan August
AU - Girisha, Katta M.
AU - Martin, Beth
AU - Kircher, Martin
AU - Olds, Carissa
AU - Juusola, Jane
AU - Collins, Sarah
AU - Park, Kaylee
AU - Carter, Melissa
AU - Glass, Ian
AU - Krägeloh-Mann, Inge
AU - Chitayat, David
AU - Parikh, Aditi Shah
AU - Bradshaw, Rachael
AU - Torti, Erin
AU - Braddock, Stephen
AU - Burke, Leah
AU - Ghedia, Sondhya
AU - Stephan, Mark
AU - Stewart, Fiona
AU - Prasad, Chitra
AU - Napier, Melanie
AU - Saitta, Sulagna
AU - Straussberg, Rachel
AU - Gabbett, Michael
AU - O’Connor, Bridget C.
AU - Keegan, Catherine E.
AU - Yin, Lim Jiin
AU - Meeng Lai, Angeline Hwei
AU - Martin, Nicole
AU - McKinnon, Margaret
AU - Addor, Marie Claude
AU - Boccuto, Luigi
AU - Schwartz, Charles E.
AU - Lanoel, Agustina
AU - Conway, Robert L.
AU - Devriendt, Koenraad
AU - Tatton-Brown, Katrina
AU - Pierpont, Mary Ella
AU - Painter, Michael
AU - Worgan, Lisa
AU - Reggin, James
AU - Hennekam, Raoul
AU - Tsuchiya, Karen
AU - Pritchard, Colin C.
AU - Aracena, Mariana
AU - Gripp, Karen W.
N1 - Publisher Copyright:
© The Author(s), 2016.
PY - 2016/6/16
Y1 - 2016/6/16
N2 - Mosaicism is increasingly recognized as a cause of developmental disorders with the advent of next-generation sequencing (NGS). Mosaic mutations of PIK3CA have been associated with the widest spectrum of phenotypes associated with overgrowth and vascular malformations. We performed targeted NGS using 2 independent deep-coverage methods that utilize molecular inversion probes and amplicon sequencing in a cohort of 241 samples from 181 individuals with brain and/or body overgrowth. We identified PIK3CA mutations in 60 individuals. Several other individuals (n = 12) were identified separately to have mutations in PIK3CA by clinical targetedpanel testing (n = 6), whole-exome sequencing (n = 5), or Sanger sequencing (n = 1). Based on the clinical and molecular features, this cohort segregated into three distinct groups: (a) severe focal overgrowth due to low-level but highly activating (hotspot) mutations, (b) predominantly brain overgrowth and less severe somatic overgrowth due to less-activating mutations, and (c) intermediate phenotypes (capillary malformations with overgrowth) with intermediately activating mutations. Sixteen of 29 PIK3CA mutations were novel. We also identified constitutional PIK3CA mutations in 10 patients. Our molecular data, combined with review of the literature, show that PIK3CA-related overgrowth disorders comprise a discontinuous spectrum of disorders that correlate with the severity and distribution of mutations.
AB - Mosaicism is increasingly recognized as a cause of developmental disorders with the advent of next-generation sequencing (NGS). Mosaic mutations of PIK3CA have been associated with the widest spectrum of phenotypes associated with overgrowth and vascular malformations. We performed targeted NGS using 2 independent deep-coverage methods that utilize molecular inversion probes and amplicon sequencing in a cohort of 241 samples from 181 individuals with brain and/or body overgrowth. We identified PIK3CA mutations in 60 individuals. Several other individuals (n = 12) were identified separately to have mutations in PIK3CA by clinical targetedpanel testing (n = 6), whole-exome sequencing (n = 5), or Sanger sequencing (n = 1). Based on the clinical and molecular features, this cohort segregated into three distinct groups: (a) severe focal overgrowth due to low-level but highly activating (hotspot) mutations, (b) predominantly brain overgrowth and less severe somatic overgrowth due to less-activating mutations, and (c) intermediate phenotypes (capillary malformations with overgrowth) with intermediately activating mutations. Sixteen of 29 PIK3CA mutations were novel. We also identified constitutional PIK3CA mutations in 10 patients. Our molecular data, combined with review of the literature, show that PIK3CA-related overgrowth disorders comprise a discontinuous spectrum of disorders that correlate with the severity and distribution of mutations.
UR - http://www.scopus.com/inward/record.url?scp=85055606564&partnerID=8YFLogxK
U2 - 10.1172/JCI.INSIGHT.87623
DO - 10.1172/JCI.INSIGHT.87623
M3 - Journal articles
C2 - 27631024
AN - SCOPUS:85055606564
SN - 2379-3708
VL - 1
JO - JCI insight
JF - JCI insight
IS - 9
M1 - e87623
ER -