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Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations

We studied 786 undiagnosed patients with LGMD or nonspecific myopathic features to investigate the role of ANO5 mutations in limb-girdle muscular dystrophies (LGMDs) and in nonspecific myopathies using the next generation sequencing (NGS) approach. In 160 LGMD patients, we first sequenced hotspot ex...

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Autores principales: Savarese, Marco, Di Fruscio, Giuseppina, Tasca, Giorgio, Ruggiero, Lucia, Janssens, Sandra, De Bleecker, Jan, Delpech, Marc, Musumeci, Olimpia, Toscano, Antonio, Angelini, Corrado, Sacconi, Sabrina, Santoro, Lucio, Ricci, Enzo, Claes, Kathleen, Politano, Luisa, Nigro, Vincenzo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pergamon Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4502439/
https://www.ncbi.nlm.nih.gov/pubmed/25891276
http://dx.doi.org/10.1016/j.nmd.2015.03.011
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author Savarese, Marco
Di Fruscio, Giuseppina
Tasca, Giorgio
Ruggiero, Lucia
Janssens, Sandra
De Bleecker, Jan
Delpech, Marc
Musumeci, Olimpia
Toscano, Antonio
Angelini, Corrado
Sacconi, Sabrina
Santoro, Lucio
Ricci, Enzo
Claes, Kathleen
Politano, Luisa
Nigro, Vincenzo
author_facet Savarese, Marco
Di Fruscio, Giuseppina
Tasca, Giorgio
Ruggiero, Lucia
Janssens, Sandra
De Bleecker, Jan
Delpech, Marc
Musumeci, Olimpia
Toscano, Antonio
Angelini, Corrado
Sacconi, Sabrina
Santoro, Lucio
Ricci, Enzo
Claes, Kathleen
Politano, Luisa
Nigro, Vincenzo
author_sort Savarese, Marco
collection PubMed
description We studied 786 undiagnosed patients with LGMD or nonspecific myopathic features to investigate the role of ANO5 mutations in limb-girdle muscular dystrophies (LGMDs) and in nonspecific myopathies using the next generation sequencing (NGS) approach. In 160 LGMD patients, we first sequenced hotspot exons 5 and 20 and then sequenced the remaining part of the coding region. Another 626 patients, recruited using broader inclusion criteria, were directly analyzed by targeted NGS. By combining NGS and Sanger sequencing, we identified 33/786 (4%) patients carrying putative pathogenic changes in both alleles and 23 ANO5 heterozygotes (3%). The phenotypic spectrum is broader than expected, from hyperCKemia to myopathies, with lack of genotype/phenotype correlations. In particular, this is currently the largest screening of the ANO5 gene. The large number of heterozygotes for damaging mutations suggests that anoctaminopathies should be frequent and often nonpenetrant. We propose the multiple genetic testing by targeted NGS as a first step to analyze patients with nonspecific myopathic presentations. This represents a straightforward approach to overcome the difficulties of clinical heterogeneity of ANO5 patients, and to test, at the same time, many other genes involved in neuromuscular disorders.
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spelling pubmed-45024392015-07-21 Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations Savarese, Marco Di Fruscio, Giuseppina Tasca, Giorgio Ruggiero, Lucia Janssens, Sandra De Bleecker, Jan Delpech, Marc Musumeci, Olimpia Toscano, Antonio Angelini, Corrado Sacconi, Sabrina Santoro, Lucio Ricci, Enzo Claes, Kathleen Politano, Luisa Nigro, Vincenzo Neuromuscul Disord Article We studied 786 undiagnosed patients with LGMD or nonspecific myopathic features to investigate the role of ANO5 mutations in limb-girdle muscular dystrophies (LGMDs) and in nonspecific myopathies using the next generation sequencing (NGS) approach. In 160 LGMD patients, we first sequenced hotspot exons 5 and 20 and then sequenced the remaining part of the coding region. Another 626 patients, recruited using broader inclusion criteria, were directly analyzed by targeted NGS. By combining NGS and Sanger sequencing, we identified 33/786 (4%) patients carrying putative pathogenic changes in both alleles and 23 ANO5 heterozygotes (3%). The phenotypic spectrum is broader than expected, from hyperCKemia to myopathies, with lack of genotype/phenotype correlations. In particular, this is currently the largest screening of the ANO5 gene. The large number of heterozygotes for damaging mutations suggests that anoctaminopathies should be frequent and often nonpenetrant. We propose the multiple genetic testing by targeted NGS as a first step to analyze patients with nonspecific myopathic presentations. This represents a straightforward approach to overcome the difficulties of clinical heterogeneity of ANO5 patients, and to test, at the same time, many other genes involved in neuromuscular disorders. Pergamon Press 2015-07 /pmc/articles/PMC4502439/ /pubmed/25891276 http://dx.doi.org/10.1016/j.nmd.2015.03.011 Text en © 2015 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Savarese, Marco
Di Fruscio, Giuseppina
Tasca, Giorgio
Ruggiero, Lucia
Janssens, Sandra
De Bleecker, Jan
Delpech, Marc
Musumeci, Olimpia
Toscano, Antonio
Angelini, Corrado
Sacconi, Sabrina
Santoro, Lucio
Ricci, Enzo
Claes, Kathleen
Politano, Luisa
Nigro, Vincenzo
Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title_full Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title_fullStr Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title_full_unstemmed Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title_short Next generation sequencing on patients with LGMD and nonspecific myopathies: Findings associated with ANO5 mutations
title_sort next generation sequencing on patients with lgmd and nonspecific myopathies: findings associated with ano5 mutations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4502439/
https://www.ncbi.nlm.nih.gov/pubmed/25891276
http://dx.doi.org/10.1016/j.nmd.2015.03.011
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