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Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells

Dysferlinopathies are a family of disabling muscular dystrophies with LGMD2B and Miyoshi myopathy as the main phenotypes. They are associated with molecular defects in DYSF, which encodes dysferlin, a key player in sarcolemmal homeostasis. Previous investigations have suggested that exon skipping ma...

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Autores principales: Barthélémy, Florian, Blouin, Cédric, Wein, Nicolas, Mouly, Vincent, Courrier, Sébastien, Dionnet, Eugénie, Kergourlay, Virginie, Mathieu, Yves, Garcia, Luis, Butler-Browne, Gillian, Lamaze, Christophe, Lévy, Nicolas, Krahn, Martin, Bartoli, Marc
Formato: Online Artículo Texto
Lenguaje:English
Publicado: IOS Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240545/
https://www.ncbi.nlm.nih.gov/pubmed/27858744
http://dx.doi.org/10.3233/JND-150109
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author Barthélémy, Florian
Blouin, Cédric
Wein, Nicolas
Mouly, Vincent
Courrier, Sébastien
Dionnet, Eugénie
Kergourlay, Virginie
Mathieu, Yves
Garcia, Luis
Butler-Browne, Gillian
Lamaze, Christophe
Lévy, Nicolas
Krahn, Martin
Bartoli, Marc
author_facet Barthélémy, Florian
Blouin, Cédric
Wein, Nicolas
Mouly, Vincent
Courrier, Sébastien
Dionnet, Eugénie
Kergourlay, Virginie
Mathieu, Yves
Garcia, Luis
Butler-Browne, Gillian
Lamaze, Christophe
Lévy, Nicolas
Krahn, Martin
Bartoli, Marc
author_sort Barthélémy, Florian
collection PubMed
description Dysferlinopathies are a family of disabling muscular dystrophies with LGMD2B and Miyoshi myopathy as the main phenotypes. They are associated with molecular defects in DYSF, which encodes dysferlin, a key player in sarcolemmal homeostasis. Previous investigations have suggested that exon skipping may be a promising therapy for a subset of patients with dysferlinopathies. Such an approach aims to rescue functional proteins when targeting modular proteins and specific tissues. We sought to evaluate the dysferlin functional recovery following exon 32 skipping in the cells of affected patients. Exon skipping efficacy was characterized at several levels by use of in vitro myotube formation assays and quantitative membrane repair and recovery tests. Data obtained from these assessments confirmed that dysferlin function is rescued by quasi-dysferlin expression in treated patient cells, supporting the case for a therapeutic antisense-based trial in a subset of dysferlin-deficient patients.
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spelling pubmed-52405452017-01-23 Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells Barthélémy, Florian Blouin, Cédric Wein, Nicolas Mouly, Vincent Courrier, Sébastien Dionnet, Eugénie Kergourlay, Virginie Mathieu, Yves Garcia, Luis Butler-Browne, Gillian Lamaze, Christophe Lévy, Nicolas Krahn, Martin Bartoli, Marc J Neuromuscul Dis Research Report Dysferlinopathies are a family of disabling muscular dystrophies with LGMD2B and Miyoshi myopathy as the main phenotypes. They are associated with molecular defects in DYSF, which encodes dysferlin, a key player in sarcolemmal homeostasis. Previous investigations have suggested that exon skipping may be a promising therapy for a subset of patients with dysferlinopathies. Such an approach aims to rescue functional proteins when targeting modular proteins and specific tissues. We sought to evaluate the dysferlin functional recovery following exon 32 skipping in the cells of affected patients. Exon skipping efficacy was characterized at several levels by use of in vitro myotube formation assays and quantitative membrane repair and recovery tests. Data obtained from these assessments confirmed that dysferlin function is rescued by quasi-dysferlin expression in treated patient cells, supporting the case for a therapeutic antisense-based trial in a subset of dysferlin-deficient patients. IOS Press 2015-09-02 /pmc/articles/PMC5240545/ /pubmed/27858744 http://dx.doi.org/10.3233/JND-150109 Text en IOS Press and the authors. All rights reserved This article is published online with Open Access and distributed under the terms of the Creative Commons Attribution Non-Commercial License.
spellingShingle Research Report
Barthélémy, Florian
Blouin, Cédric
Wein, Nicolas
Mouly, Vincent
Courrier, Sébastien
Dionnet, Eugénie
Kergourlay, Virginie
Mathieu, Yves
Garcia, Luis
Butler-Browne, Gillian
Lamaze, Christophe
Lévy, Nicolas
Krahn, Martin
Bartoli, Marc
Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title_full Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title_fullStr Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title_full_unstemmed Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title_short Exon 32 Skipping of Dysferlin Rescues Membrane Repair in Patients’ Cells
title_sort exon 32 skipping of dysferlin rescues membrane repair in patients’ cells
topic Research Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5240545/
https://www.ncbi.nlm.nih.gov/pubmed/27858744
http://dx.doi.org/10.3233/JND-150109
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