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The lncrna 44s2 study applicability to the design of 45-55 exon skipping therapeutic strategy for DMD

  • Elena Gargaun
  • , Sestina Falcone
  • , Guilhem Solé
  • , Julien Durigneux
  • , Andoni Urtizberea
  • , Jean Marie Cuisset
  • , Sofia Benkhelifa-Ziyyat
  • , Laura Julien
  • , Anne Boland
  • , Florian Sandron
  • , Vincent Meyer
  • , Jean François Deleuze
  • , David Salgado
  • , Jean Pierre Desvignes
  • , Christophe Béroud
  • , Anatole Chessel
  • , Alexia Blesius
  • , Martin Krahn
  • , Nicolas Levy
  • , France Leturcq
  • France Pietri-Rouxel
  • AP-HP
  • CHU Bordeaux
  • Centre Hospitalier Universitaire
  • CHU Lille
  • Université Paris-Saclay
  • Aix Marseille Université
  • CHU Marseille
  • Institut de Recherches Internationales Servier
  • Pôle Gérontologie

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

In skeletal muscle, long noncoding RNAs (lncRNAs) are involved in dystrophin protein stabilization but also in the regulation of myocytes proliferation and differentiation. Hence, they could represent promising therapeutic targets and/or biomarkers for Duchenne and Becker muscular dystrophy (DMD/BMD). DMD and BMD are X-linked myopathies characterized by a progres-sive muscular dystrophy with or without dilatative cardiomyopathy. Two-thirds of DMD gene mutations are represented by deletions, and 63% of patients carrying DMD deletions are eligible for 45 to 55 multi-exons skipping (MES), becoming BMD patients (BMDΔ45-55). We analyzed the genomic lncRNA presence in 38 BMDΔ45-55 patients and characterized the lncRNA localized in introns 44 and 55 of the DMD gene. We highlighted that all four lncRNA are differentially expressed during myogenesis in immortalized and primary human myoblasts. In addition, the lncRNA44s2 was pointed out as a possible accelerator of differentiation. Interestingly, lncRNA44s expression was associated with a favorable clinical phenotype. These findings suggest that lncRNA44s2 could be involved in muscle differentiation process and become a potential disease progression biomarker. Based on these results, we support MES45-55 therapy and propose that the design of the CRISPR/Cas9 MES45-55 assay consider the lncRNA sequences bordering the exonic 45 to 55 dele-tion.

langue originaleAnglais
Numéro d'article219
Pages (de - à)1-18
Nombre de pages18
journalBiomedicines
Volume9
Numéro de publication2
Les DOIs
étatPublié - 1 févr. 2021

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