Exon skipping is an effective strategy for the treatment of many Duchenne Muscular Dystrophy (DMD) mutations. Natural exon skipping observed in several DMD cases can help in identifying novel therapeutic tools. Here, we show a DMD study case where the lack of a splicing factor (Celf2a), which results in exon skipping and dystrophin rescue, is due to a maternally inherited trans-generational epigenetic silencing. We found that the study case and his mother express a repressive long non-coding RNA, DUXAP8, whose presence correlates with silencing of the Celf2a coding region. We also demonstrate that DUXAP8 expression is lost upon cell reprogramming and that, upon induction of iPSCs into myoblasts, Celf2a expression is recovered leading to the loss of exon skipping and loss of dystrophin synthesis. Finally, CRISPR/Cas9 inactivation of the splicing factor Celf2a was proven to ameliorate the pathological state in other DMD backgrounds establishing Celf2a ablation or inactivation as a novel therapeutic approach for the treatment of Duchenne Muscular Dystrophy.

Trans-generational epigenetic regulation associated with the amelioration of Duchenne Muscular Dystrophy / Martone, J.; Lisi, M.; Castagnetti, F.; Rosa, A.; Di Carlo, V.; Blanco, E.; Setti, A.; Mariani, D.; Colantoni, A.; Santini, T.; Perone, L.; Di Croce, L.; Bozzoni, I.. - In: EMBO MOLECULAR MEDICINE. - ISSN 1757-4676. - (2020). [10.15252/emmm.202012063]

Trans-generational epigenetic regulation associated with the amelioration of Duchenne Muscular Dystrophy

Martone J.;Lisi M.;Castagnetti F.;Rosa A.;Di Carlo V.;Setti A.;Mariani D.;Colantoni A.;Santini T.;Perone L.;Bozzoni I.
2020

Abstract

Exon skipping is an effective strategy for the treatment of many Duchenne Muscular Dystrophy (DMD) mutations. Natural exon skipping observed in several DMD cases can help in identifying novel therapeutic tools. Here, we show a DMD study case where the lack of a splicing factor (Celf2a), which results in exon skipping and dystrophin rescue, is due to a maternally inherited trans-generational epigenetic silencing. We found that the study case and his mother express a repressive long non-coding RNA, DUXAP8, whose presence correlates with silencing of the Celf2a coding region. We also demonstrate that DUXAP8 expression is lost upon cell reprogramming and that, upon induction of iPSCs into myoblasts, Celf2a expression is recovered leading to the loss of exon skipping and loss of dystrophin synthesis. Finally, CRISPR/Cas9 inactivation of the splicing factor Celf2a was proven to ameliorate the pathological state in other DMD backgrounds establishing Celf2a ablation or inactivation as a novel therapeutic approach for the treatment of Duchenne Muscular Dystrophy.
2020
ATAC sequencing; DMD Exon skipping; iPSC Reprogramming; lncRNAs; trans-generational epigenetic inheritance
01 Pubblicazione su rivista::01a Articolo in rivista
Trans-generational epigenetic regulation associated with the amelioration of Duchenne Muscular Dystrophy / Martone, J.; Lisi, M.; Castagnetti, F.; Rosa, A.; Di Carlo, V.; Blanco, E.; Setti, A.; Mariani, D.; Colantoni, A.; Santini, T.; Perone, L.; Di Croce, L.; Bozzoni, I.. - In: EMBO MOLECULAR MEDICINE. - ISSN 1757-4676. - (2020). [10.15252/emmm.202012063]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1427982
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