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Results of next‐generation sequencing gene panel diagnostics including copy‐number variation analysis in 810 patients suspected of heritable thoracic aortic disorders

Authors :
Marlies Kempers
Maarten Groenink
Yvonne Hilhorst-Hofstee
Kak K. Yeung
Ingrid P.C. Krapels
Peter van Rijn
Luisa Marsili
Irma van de Beek
Judith M.A. Verhagen
Johanna M. van Hagen
Leonie A. Menke
Arjan C. Houweling
Eelco Dulfer
Eline Overwater
Els Voorhoeve
Marjan M. Weiss
Petra J.G. Zwijnenburg
Marieke J.H. Baars
J. Peter van Tintelen
Alessandra Maugeri
Annette F. Baas
Cardiovascular Centre (CVC)
Clinical Genetics
MUMC+: DA KG Polikliniek (9)
RS: FHML non-thematic output
ACS - Heart failure & arrhythmias
Graduate School
Human Genetics
General Paediatrics
ANS - Cellular & Molecular Mechanisms
Surgery
Cardiology
ARD - Amsterdam Reproduction and Development
ACS - Pulmonary hypertension & thrombosis
Human genetics
ACS - Atherosclerosis & ischemic syndromes
Amsterdam Reproduction & Development (AR&D)
Source :
Human Mutation, Human Mutation, 39(9), 1173-1192. Wiley, Human Mutation, 39(9), 1173-1192. Wiley-Liss Inc., Human Mutation, 39, 9, pp. 1173-1192, Human Mutation, 39(9), 1173-1192, Overwater, E, Marsili, L, Baars, M J H, Baas, A F, van de Beek, I, Dulfer, E, van Hagen, J M, Hilhorst-Hofstee, Y, Kempers, M, Krapels, I P, Menke, L A, Verhagen, J M A, Yeung, K K, Zwijnenburg, P J G, Groenink, M, van Rijn, P, Weiss, M M, Voorhoeve, E, van Tintelen, J P, Houweling, A C & Maugeri, A 2018, ' Results of next-generation sequencing gene panel diagnostics including copy-number variation analysis in 810 patients suspected of heritable thoracic aortic disorders ', Human Mutation, vol. 39, no. 9, pp. 1173-1192 . https://doi.org/10.1002/humu.23565, Human Mutation, 39, 1173-1192, Human mutation, 39(9), 1173-1192. Wiley-Liss Inc.
Publication Year :
2018
Publisher :
John Wiley and Sons Inc., 2018.

Abstract

Simultaneous analysis of multiple genes using next‐generation sequencing (NGS) technology has become widely available. Copy‐number variations (CNVs) in disease‐associated genes have emerged as a cause for several hereditary disorders. CNVs are, however, not routinely detected using NGS analysis. The aim of this study was to assess the diagnostic yield and the prevalence of CNVs using our panel of Hereditary Thoracic Aortic Disease (H‐TAD)‐associated genes. Eight hundred ten patients suspected of H‐TAD were analyzed by targeted NGS analysis of 21 H‐TAD associated genes. In addition, the eXome hidden Markov model (XHMM; an algorithm to identify CNVs in targeted NGS data) was used to detect CNVs in these genes. A pathogenic or likely pathogenic variant was found in 66 of 810 patients (8.1%). Of these 66 pathogenic or likely pathogenic variants, six (9.1%) were CNVs not detectable by routine NGS analysis. These CNVs were four intragenic (multi‐)exon deletions in MYLK, TGFB2, SMAD3, and PRKG1, respectively. In addition, a large duplication including NOTCH1 and a large deletion encompassing SCARF2 were detected. As confirmed by additional analyses, both CNVs indicated larger chromosomal abnormalities, which could explain the phenotype in both patients. Given the clinical relevance of the identification of a genetic cause, CNV analysis using a method such as XHMM should be incorporated into the clinical diagnostic care for H‐TAD patients.

Details

Language :
English
ISSN :
10981004, 10597794, and 11731192
Volume :
39
Issue :
9
Database :
OpenAIRE
Journal :
Human Mutation
Accession number :
edsair.doi.dedup.....cc8c426c9fe49d5102d4fc94e5c26e79
Full Text :
https://doi.org/10.1002/humu.23565