Exon skipping has been demonstrated to be a successful strategy for the gene therapy of Duchenne muscular dystrophy (DMD): the rational being to convert severe Duchenne forms into milder Becker ones. Here, we show the selection of U1 snRNA-antisense constructs able to confer effective rescue of dystrophin synthesis in a Delta 44 Duchenne genetic background, through skipping of exon 45; moreover, we demonstrate that the resulting dystrophin is able to recover timing of myogenic marker expression, to relocalize neuronal nitric oxide synthase (nNOS) and to rescue expression of miRNAs previously shown to be sensitive to the Dystrophin-nNOS-HDAC2 pathway. Becker mutations display different phenotypes, likely depending on whether the shorter protein is able to reconstitute the wide range of wild-type functions. Among them, efficient assembly of the dystrophin-associated protein complex (DAPC) and nNOS localization are important. Comparing different Becker deletions we demonstrate the correlation between the ability of the mutant dystrophin to relocalize nNOS and the expression levels of two miRNAs, miR-1 and miR29c, known to be involved in muscle homeostasis and to be controlled by the Dys-nNOS-HDAC2 pathway. Received 10 May 2012; accepted 27 July 2012; advance online publication 11 September 2012. doi:10.1038/mt.2012.178

Exon 45 Skipping Through U1-snRNA Antisense Molecules Recovers the Dys-nNOS Pathway and Muscle Differentiation in Human DMD Myoblasts / Cazzella, Valentina; Martone, Julie; Chiara, Pinnaro; Santini, Tiziana; Shyam Sundar, Twayana; Sthandier, Olga Elena; Adele, D'Amico; Valeria, Ricotti; Enrico, Bertini; Francesco, Muntoni; Bozzoni, Irene. - In: MOLECULAR THERAPY. - ISSN 1525-0016. - STAMPA. - 20:11(2012), pp. 2134-2142. [10.1038/mt.2012.178]

Exon 45 Skipping Through U1-snRNA Antisense Molecules Recovers the Dys-nNOS Pathway and Muscle Differentiation in Human DMD Myoblasts

CAZZELLA, VALENTINA;MARTONE, Julie;SANTINI, Tiziana;STHANDIER, Olga Elena;BOZZONI, Irene
2012

Abstract

Exon skipping has been demonstrated to be a successful strategy for the gene therapy of Duchenne muscular dystrophy (DMD): the rational being to convert severe Duchenne forms into milder Becker ones. Here, we show the selection of U1 snRNA-antisense constructs able to confer effective rescue of dystrophin synthesis in a Delta 44 Duchenne genetic background, through skipping of exon 45; moreover, we demonstrate that the resulting dystrophin is able to recover timing of myogenic marker expression, to relocalize neuronal nitric oxide synthase (nNOS) and to rescue expression of miRNAs previously shown to be sensitive to the Dystrophin-nNOS-HDAC2 pathway. Becker mutations display different phenotypes, likely depending on whether the shorter protein is able to reconstitute the wide range of wild-type functions. Among them, efficient assembly of the dystrophin-associated protein complex (DAPC) and nNOS localization are important. Comparing different Becker deletions we demonstrate the correlation between the ability of the mutant dystrophin to relocalize nNOS and the expression levels of two miRNAs, miR-1 and miR29c, known to be involved in muscle homeostasis and to be controlled by the Dys-nNOS-HDAC2 pathway. Received 10 May 2012; accepted 27 July 2012; advance online publication 11 September 2012. doi:10.1038/mt.2012.178
2012
01 Pubblicazione su rivista::01a Articolo in rivista
Exon 45 Skipping Through U1-snRNA Antisense Molecules Recovers the Dys-nNOS Pathway and Muscle Differentiation in Human DMD Myoblasts / Cazzella, Valentina; Martone, Julie; Chiara, Pinnaro; Santini, Tiziana; Shyam Sundar, Twayana; Sthandier, Olga Elena; Adele, D'Amico; Valeria, Ricotti; Enrico, Bertini; Francesco, Muntoni; Bozzoni, Irene. - In: MOLECULAR THERAPY. - ISSN 1525-0016. - STAMPA. - 20:11(2012), pp. 2134-2142. [10.1038/mt.2012.178]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/506081
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