PIK3CA-associated developmental disorders exhibit distinct classes of mutations with variable expression and tissue distribution

桑格测序 表型 外显子组测序 生物 深度测序 遗传学 放大器 外显子组 大规模并行测序 DNA测序 突变 基因 聚合酶链反应 基因组
作者
Ghayda Mirzaa,Andrew E. Timms,Valerio Conti,Evan A. Boyle,Katta M. Girisha,Beth Martin,Martin Kircher,Carissa Olds,Jan M. Friedman,Sarah Collins,Kaylee Park,Melissa Carter,Ian A. Glass,I Krägeloh-Mann,David Chitayat,Aditi Parikh,Rachael Bradshaw,Erin Torti,Stephen R. Braddock,Leah W. Burke,Sondhya Ghedia,Mark J. Stephan,Fiona Stewart,Chitra Prasad,Melanie Napier,Sulagna C. Saitta,Rachel Straussberg,Michael T. Gabbett,Bridget O’Connor,Catherine E. Keegan,Lim Jiin Yin,Angeline Lai,Nicole Martin,Margaret L. McKinnon,Marie-Claude Addor,Luigi Boccuto,Charles E. Schwartz,Agustina Lanoël,Robert L. Conway,Koenraad Devriendt,Katrina Tatton‐Brown,Mary Ella Pierpont,Michael J. Painter,Lisa Worgan,James D. Reggin,Raoul C. M. Hennekam,Karen D. Tsuchiya,Colin C. Pritchard,Mariana Aracena,Karen W. Gripp,Maria Cordisco,Hilde Van Esch,Livia Garavelli,Cynthia J. Curry,Anne Goriely,Hülya Kayserili,Jay Shendure,John M. Graham,Renzo Guerrini,William B. Dobyns
出处
期刊:JCI insight [American Society for Clinical Investigation]
卷期号:1 (9) 被引量:154
标识
DOI:10.1172/jci.insight.87623
摘要

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 targeted-panel 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.

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