Literature DB >> 27307077

Utility of clinical high-depth next generation sequencing for somatic variant detection in the PIK3CA-related overgrowth spectrum.

V Hucthagowder1, A Shenoy1, M Corliss1, K A Vigh-Conrad2, C Storer2, D K Grange3, C E Cottrell1,2.   

Abstract

Next-generation sequencing (NGS) has revolutionized the approach of studying sequence variation, and has been well described in the clinical laboratory setting for the detection of constitutional alterations, as well as somatic tumor-associated variants. It is increasingly recognized that post-zygotic somatic alteration can be associated with congenital phenotypic abnormalities. Variation within the PI3K/AKT/mTOR pathway, including PIK3CA, has been described in somatic overgrowth syndromes and vascular malformations. Detection of PIK3CA somatic alteration is challenging because of low variant allele frequency (VAF) along with the need to assay involved tissue, thus necessitating a highly sensitive methodology. Here we describe the utility of target hybrid capture coupled with NGS for the identification of somatic variation in the PIK3CA-related overgrowth spectrum (PROS) among 14 patients submitted for clinical testing. Assay detection of low allelic fraction variation is coverage dependent with >90% sensitivity at 400× unique read depth for VAF of 10%, and approaching 100% at 1000×. Average read depth among the patient dataset across PIK3CA coding regions was 788.4. The diagnostic yield among this cohort was 71%, including the detection of two PIK3CA alterations novel in the setting of PROS. This report expands the mutational scope and phenotypic attributes of PROS disorders.
© 2016 John Wiley & Sons A/S. Published by John Wiley & Sons Ltd.

Entities:  

Keywords:  NGS; PIK3CA; PROS; next-generation sequencing; overgrowth; somatic

Mesh:

Substances:

Year:  2016        PMID: 27307077     DOI: 10.1111/cge.12819

Source DB:  PubMed          Journal:  Clin Genet        ISSN: 0009-9163            Impact factor:   4.438


  13 in total

1.  Scarring in Patients With PIK3CA-Related Overgrowth Syndromes.

Authors:  Jack E Steiner; Catherine E Cottrell; Jenna L Streicher; John N Jensen; David M King; Patricia E Burrows; Dawn H Siegel; Megha M Tollefson; Beth A Drolet; Katherine B Püttgen
Journal:  JAMA Dermatol       Date:  2018-04-01       Impact factor: 10.282

2.  Diagnostic Utility of Next-Generation Sequencing for Disorders of Somatic Mosaicism: A Five-Year Cumulative Cohort.

Authors:  Samantha N McNulty; Michael J Evenson; Meagan M Corliss; Latisha D Love-Gregory; Molly C Schroeder; Yang Cao; Yi-Shan Lee; Beth A Drolet; Julie A Neidich; Catherine E Cottrell; Jonathan W Heusel
Journal:  Am J Hum Genet       Date:  2019-10-03       Impact factor: 11.025

3.  Diffuse capillary malformation with overgrowth contains somatic PIK3CA variants.

Authors:  Jeremy A Goss; Dennis J Konczyk; Patrick Smits; Christopher L Sudduth; Joyce Bischoff; Marilyn G Liang; Arin K Greene
Journal:  Clin Genet       Date:  2020-01-27       Impact factor: 4.438

4.  Causal somatic mutations in urine DNA from persons with the CLOVES subgroup of the PIK3CA-related overgrowth spectrum.

Authors:  M E Michel; D J Konczyk; K S Yeung; R Murillo; M P Vivero; A M Hall; D Zurakowski; D Adams; A Gupta; A Y Huang; B H Y Chung; M L Warman
Journal:  Clin Genet       Date:  2018-01-25       Impact factor: 4.438

Review 5.  Cancer-Associated PIK3CA Mutations in Overgrowth Disorders.

Authors:  Ralitsa R Madsen; Bart Vanhaesebroeck; Robert K Semple
Journal:  Trends Mol Med       Date:  2018-09-06       Impact factor: 11.951

6.  Molecular diagnosis of somatic overgrowth conditions: A single-center experience.

Authors:  Emilie Lalonde; Jessica Ebrahimzadeh; Keith Rafferty; Jennifer Richards-Yutz; Richard Grant; Erik Toorens; Jennifer Marie Rosado; Erica Schindewolf; Tapan Ganguly; Jennifer M Kalish; Matthew A Deardorff; Arupa Ganguly
Journal:  Mol Genet Genomic Med       Date:  2019-02-13       Impact factor: 2.183

7.  Alterations of the MEK/ERK, BMP, and Wnt/β-catenin pathways detected in the blood of individuals with lymphatic malformations.

Authors:  Taehan Kim; Elidia Tafoya; Malcolm P Chelliah; Ramrada Lekwuttikarn; Jiang Li; Kavita Y Sarin; Joyce Teng
Journal:  PLoS One       Date:  2019-04-04       Impact factor: 3.240

8.  Early activating somatic PIK3CA mutations promote ectopic muscle development and upper limb overgrowth.

Authors:  Sofia Frisk; Fulya Taylan; Izabela Blaszczyk; Inger Nennesmo; Göran Annerén; Bettina Herm; Eva-Lena Stattin; Vasilios Zachariadis; Anna Lindstrand; Bianca Tesi; Tobias Laurell; Ann Nordgren
Journal:  Clin Genet       Date:  2019-05-09       Impact factor: 4.438

9.  Disease-associated mosaic variation in clinical exome sequencing: a two-year pediatric tertiary care experience.

Authors:  Cecelia R Miller; Kristy Lee; Ruthann B Pfau; Shalini C Reshmi; Donald J Corsmeier; Sayaka Hashimoto; Ashita Dave-Wala; Vijayakumar Jayaraman; Daniel Koboldt; Theodora Matthews; Danielle Mouhlas; Maggie Stein; Aimee McKinney; Tom Grossman; Benjamin J Kelly; Peter White; Vincent Magrini; Richard K Wilson; Elaine R Mardis; Catherine E Cottrell
Journal:  Cold Spring Harb Mol Case Stud       Date:  2020-06-12

10.  Detailed analysis of phenotypes and genotypes in megalencephaly-capillary malformation-polymicrogyria syndrome caused by somatic mosaicism of PIK3CA mutations.

Authors:  Hyun Jin Park; Chang Ho Shin; Won Joon Yoo; Tae-Joon Cho; Man Jin Kim; Moon-Woo Seong; Sung Sup Park; Jeong Ho Lee; Nam Suk Sim; Jung Min Ko
Journal:  Orphanet J Rare Dis       Date:  2020-08-10       Impact factor: 4.123

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