In Vitro and In Vivo Modulation of Alternative Splicing by the Biguanide Metformin - Sorbonne Université Accéder directement au contenu
Article Dans Une Revue Molecular Therapy - Nucleic Acids Année : 2015

In Vitro and In Vivo Modulation of Alternative Splicing by the Biguanide Metformin

Anne Boland
Christophe Battail
François Artiguenave
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Jean-François Deleuze
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Denis Furling
Guillaume Bassez
Xavier Nissan

Résumé

Major physiological changes are governed by alternative splicing of RNA, and its misregulation may lead to specific diseases. With the use of a genome-wide approach, we show here that this splicing step can be modified by medication and demonstrate the effects of the biguanide metformin, on alternative splicing. The mechanism of action involves AMPK activation and downregulation of the RBM3 RNA-binding protein. The effects of metformin treatment were tested on myotonic dystrophy type I (DM1), a multisystemic disease considered to be a spliceopathy. We show that this drug promotes a corrective effect on several splicing defects associated with DM1 in derivatives of human embryonic stem cells carrying the causal mutation of DM1 as well as in primary myoblasts derived from patients. The biological effects of metformin were shown to be compatible with typical therapeutic dosages in a clinical investigation involving diabetic patients. The drug appears to act as a modifier of alternative splicing of a subset of genes and may therefore have novel therapeutic potential for many more diseases besides those directly linked to defective alternative splicing.

Domaines

Génétique
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Dates et versions

hal-01277500 , version 1 (22-02-2016)

Licence

Paternité - Pas d'utilisation commerciale - Pas de modification

Identifiants

Citer

Delphine Laustriat, Jacqueline Gide, Laetitia Barrault, Emilie Chautard, Clara Benoit, et al.. In Vitro and In Vivo Modulation of Alternative Splicing by the Biguanide Metformin. Molecular Therapy - Nucleic Acids, 2015, 4 (11), pp.e262. ⟨10.1038/mtna.2015.35⟩. ⟨hal-01277500⟩
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