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Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene

Nonsense mutations are involved in multiple peripheral neuropathies. These mutations induce the presence of a premature termination codon (PTC) at the mRNA level. As a result, a dysfunctional or truncated protein is synthesized, or even absent linked to nonsense-mediated mRNA degradation (NMD) syste...

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Autores principales: Benslimane, Nesrine, Miressi, Federica, Loret, Camille, Richard, Laurence, Nizou, Angélique, Pyromali, Ioanna, Faye, Pierre-Antoine, Favreau, Frédéric, Lejeune, Fabrice, Lia, Anne-Sophie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385573/
https://www.ncbi.nlm.nih.gov/pubmed/37513945
http://dx.doi.org/10.3390/ph16071034
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author Benslimane, Nesrine
Miressi, Federica
Loret, Camille
Richard, Laurence
Nizou, Angélique
Pyromali, Ioanna
Faye, Pierre-Antoine
Favreau, Frédéric
Lejeune, Fabrice
Lia, Anne-Sophie
author_facet Benslimane, Nesrine
Miressi, Federica
Loret, Camille
Richard, Laurence
Nizou, Angélique
Pyromali, Ioanna
Faye, Pierre-Antoine
Favreau, Frédéric
Lejeune, Fabrice
Lia, Anne-Sophie
author_sort Benslimane, Nesrine
collection PubMed
description Nonsense mutations are involved in multiple peripheral neuropathies. These mutations induce the presence of a premature termination codon (PTC) at the mRNA level. As a result, a dysfunctional or truncated protein is synthesized, or even absent linked to nonsense-mediated mRNA degradation (NMD) system activation. Readthrough molecules or NMD inhibitors could be innovative therapies in these hereditary neuropathies, particularly molecules harboring the dual activity as amlexanox. Charcot–Marie–Tooth (CMT) is the most common inherited pathology of the peripheral nervous system, affecting 1 in 2500 people worldwide. Nonsense mutations in the GDAP1 gene have been associated with a severe form of CMT, prompting us to investigate the effect of readthrough and NMD inhibitor molecules. Although not clearly defined, GDAP1 could be involved in mitochondrial functions, such as mitophagy. We focused on the homozygous c.581C>G (p.Ser194*) mutation inducing CMT2H using patient human induced pluripotent stem cell (hiPSC)-derived neuronal cells. Treatment during 20 h with 100 µM of amlexanox on this cell model stabilized GDAP1 mRNAs carrying UGA-PTC and induced a restoration of the mitochondrial morphology. These results highlight the potential of readthrough molecules associated to NMD inhibitors for the treatment of genetic alterations in CMT, opening the way for future investigations and a potential therapy.
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spelling pubmed-103855732023-07-30 Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene Benslimane, Nesrine Miressi, Federica Loret, Camille Richard, Laurence Nizou, Angélique Pyromali, Ioanna Faye, Pierre-Antoine Favreau, Frédéric Lejeune, Fabrice Lia, Anne-Sophie Pharmaceuticals (Basel) Article Nonsense mutations are involved in multiple peripheral neuropathies. These mutations induce the presence of a premature termination codon (PTC) at the mRNA level. As a result, a dysfunctional or truncated protein is synthesized, or even absent linked to nonsense-mediated mRNA degradation (NMD) system activation. Readthrough molecules or NMD inhibitors could be innovative therapies in these hereditary neuropathies, particularly molecules harboring the dual activity as amlexanox. Charcot–Marie–Tooth (CMT) is the most common inherited pathology of the peripheral nervous system, affecting 1 in 2500 people worldwide. Nonsense mutations in the GDAP1 gene have been associated with a severe form of CMT, prompting us to investigate the effect of readthrough and NMD inhibitor molecules. Although not clearly defined, GDAP1 could be involved in mitochondrial functions, such as mitophagy. We focused on the homozygous c.581C>G (p.Ser194*) mutation inducing CMT2H using patient human induced pluripotent stem cell (hiPSC)-derived neuronal cells. Treatment during 20 h with 100 µM of amlexanox on this cell model stabilized GDAP1 mRNAs carrying UGA-PTC and induced a restoration of the mitochondrial morphology. These results highlight the potential of readthrough molecules associated to NMD inhibitors for the treatment of genetic alterations in CMT, opening the way for future investigations and a potential therapy. MDPI 2023-07-21 /pmc/articles/PMC10385573/ /pubmed/37513945 http://dx.doi.org/10.3390/ph16071034 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Benslimane, Nesrine
Miressi, Federica
Loret, Camille
Richard, Laurence
Nizou, Angélique
Pyromali, Ioanna
Faye, Pierre-Antoine
Favreau, Frédéric
Lejeune, Fabrice
Lia, Anne-Sophie
Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title_full Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title_fullStr Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title_full_unstemmed Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title_short Amlexanox: Readthrough Induction and Nonsense-Mediated mRNA Decay Inhibition in a Charcot–Marie–Tooth Model of hiPSCs-Derived Neuronal Cells Harboring a Nonsense Mutation in GDAP1 Gene
title_sort amlexanox: readthrough induction and nonsense-mediated mrna decay inhibition in a charcot–marie–tooth model of hipscs-derived neuronal cells harboring a nonsense mutation in gdap1 gene
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10385573/
https://www.ncbi.nlm.nih.gov/pubmed/37513945
http://dx.doi.org/10.3390/ph16071034
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