A Reliable Targeted Next-Generation Sequencing Strategy for Diagnosis of Myopathies and Muscular Dystrophies, Especially for the Giant Titin and Nebulin Genes

Myopathies and muscular dystrophies (M-MDs) are genetically heterogeneous diseases, with >100 identified genes, including the giant and complex titin (TTN) and nebulin (NEB) genes. Next-generation sequencing technology revolutionized M-MD diagnosis and revealed high frequency of TTN and NEB varia...

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Veröffentlicht in:The Journal of molecular diagnostics : JMD 2018-07, Vol.20 (4), p.533-549
Hauptverfasser: Zenagui, Reda, Lacourt, Delphine, Pegeot, Henri, Yauy, Kevin, Juntas Morales, Raul, Theze, Corine, Rivier, François, Cances, Claude, Sole, Guilhem, Renard, Dimitri, Walther-Louvier, Ulrike, Ferrer-Monasterio, Xavier, Espil, Caroline, Arné-Bes, Marie-Christine, Cintas, Pascal, Uro-Coste, Emmanuelle, Martin Negrier, Marie-Laure, Rigau, Valérie, Bieth, Eric, Goizet, Cyril, Claustres, Mireille, Koenig, Michel, Cossée, Mireille
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Sprache:eng
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Zusammenfassung:Myopathies and muscular dystrophies (M-MDs) are genetically heterogeneous diseases, with >100 identified genes, including the giant and complex titin (TTN) and nebulin (NEB) genes. Next-generation sequencing technology revolutionized M-MD diagnosis and revealed high frequency of TTN and NEB variants. We developed a next-generation sequencing diagnostic strategy targeted to the coding sequences of 135 M-MD genes. Comparison of two targeted capture technologies (SeqCap EZ Choice library capture kit and Nextera Rapid Capture Custom Enrichment kit) and of two whole-exome sequencing kits (SureSelect V5 and TruSeq RapidExome capture) revealed best coverage with the SeqCap EZ Choice protocol. A marked decrease in coverage was observed with the other kits, affecting mostly the first exons of genes and the repeated regions of TTN and NEB. Bioinformatics analysis strategy was fine-tuned to achieve optimal detection of variants, including small insertions/deletions (INDELs) and copy number variants (CNVs). Analysis of a cohort of 128 patients allowed the detection of 52 substitutions, 13 INDELs (including a trinucleotide repeat expansion), and 3 CNVs. Two INDELs were localized in the repeated regions of NEB, suggesting that these mutations may be frequent but underestimated. A large deletion was also identified in TTN that is, to our knowledge, the first published CNV in this gene.
ISSN:1525-1578
1943-7811
DOI:10.1016/j.jmoldx.2018.04.001