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Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila

Non-coding CUG repeat expansions interfere with the activity of human Muscleblind-like (MBNL) proteins contributing to myotonic dystrophy 1 (DM1). To understand this toxic RNA gain-of-function mechanism we developed a Drosophila model expressing 60 pure and 480 interrupted CUG repeats in the context...

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Autores principales: Garcia-Lopez, Amparo, Monferrer, Lidon, Garcia-Alcover, Irma, Vicente-Crespo, Marta, Alvarez-Abril, M. Carmen, Artero, Ruben D.
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2220037/
https://www.ncbi.nlm.nih.gov/pubmed/18270582
http://dx.doi.org/10.1371/journal.pone.0001595
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author Garcia-Lopez, Amparo
Monferrer, Lidon
Garcia-Alcover, Irma
Vicente-Crespo, Marta
Alvarez-Abril, M. Carmen
Artero, Ruben D.
author_facet Garcia-Lopez, Amparo
Monferrer, Lidon
Garcia-Alcover, Irma
Vicente-Crespo, Marta
Alvarez-Abril, M. Carmen
Artero, Ruben D.
author_sort Garcia-Lopez, Amparo
collection PubMed
description Non-coding CUG repeat expansions interfere with the activity of human Muscleblind-like (MBNL) proteins contributing to myotonic dystrophy 1 (DM1). To understand this toxic RNA gain-of-function mechanism we developed a Drosophila model expressing 60 pure and 480 interrupted CUG repeats in the context of a non-translatable RNA. These flies reproduced aspects of the DM1 pathology, most notably nuclear accumulation of CUG transcripts, muscle degeneration, splicing misregulation, and diminished Muscleblind function in vivo. Reduced Muscleblind activity was evident from the sensitivity of CUG-induced phenotypes to a decrease in muscleblind genetic dosage and rescue by MBNL1 expression, and further supported by the co-localization of Muscleblind and CUG repeat RNA in ribonuclear foci. Targeted expression of CUG repeats to the developing eye and brain mushroom bodies was toxic leading to rough eyes and semilethality, respectively. These phenotypes were utilized to identify genetic and chemical modifiers of the CUG-induced toxicity. 15 genetic modifiers of the rough eye phenotype were isolated. These genes identify putative cellular processes unknown to be altered by CUG repeat RNA, and they include mRNA export factor Aly, apoptosis inhibitor Thread, chromatin remodelling factor Nurf-38, and extracellular matrix structural component Viking. Ten chemical compounds suppressed the semilethal phenotype. These compounds significantly improved viability of CUG expressing flies and included non-steroidal anti-inflammatory agents (ketoprofen), muscarinic, cholinergic and histamine receptor inhibitors (orphenadrine), and drugs that can affect sodium and calcium metabolism such as clenbuterol and spironolactone. These findings provide new insights into the DM1 phenotype, and suggest novel candidates for DM1 treatments.
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spelling pubmed-22200372008-02-13 Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila Garcia-Lopez, Amparo Monferrer, Lidon Garcia-Alcover, Irma Vicente-Crespo, Marta Alvarez-Abril, M. Carmen Artero, Ruben D. PLoS One Research Article Non-coding CUG repeat expansions interfere with the activity of human Muscleblind-like (MBNL) proteins contributing to myotonic dystrophy 1 (DM1). To understand this toxic RNA gain-of-function mechanism we developed a Drosophila model expressing 60 pure and 480 interrupted CUG repeats in the context of a non-translatable RNA. These flies reproduced aspects of the DM1 pathology, most notably nuclear accumulation of CUG transcripts, muscle degeneration, splicing misregulation, and diminished Muscleblind function in vivo. Reduced Muscleblind activity was evident from the sensitivity of CUG-induced phenotypes to a decrease in muscleblind genetic dosage and rescue by MBNL1 expression, and further supported by the co-localization of Muscleblind and CUG repeat RNA in ribonuclear foci. Targeted expression of CUG repeats to the developing eye and brain mushroom bodies was toxic leading to rough eyes and semilethality, respectively. These phenotypes were utilized to identify genetic and chemical modifiers of the CUG-induced toxicity. 15 genetic modifiers of the rough eye phenotype were isolated. These genes identify putative cellular processes unknown to be altered by CUG repeat RNA, and they include mRNA export factor Aly, apoptosis inhibitor Thread, chromatin remodelling factor Nurf-38, and extracellular matrix structural component Viking. Ten chemical compounds suppressed the semilethal phenotype. These compounds significantly improved viability of CUG expressing flies and included non-steroidal anti-inflammatory agents (ketoprofen), muscarinic, cholinergic and histamine receptor inhibitors (orphenadrine), and drugs that can affect sodium and calcium metabolism such as clenbuterol and spironolactone. These findings provide new insights into the DM1 phenotype, and suggest novel candidates for DM1 treatments. Public Library of Science 2008-02-13 /pmc/articles/PMC2220037/ /pubmed/18270582 http://dx.doi.org/10.1371/journal.pone.0001595 Text en Garcia-Lopez et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Garcia-Lopez, Amparo
Monferrer, Lidon
Garcia-Alcover, Irma
Vicente-Crespo, Marta
Alvarez-Abril, M. Carmen
Artero, Ruben D.
Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title_full Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title_fullStr Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title_full_unstemmed Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title_short Genetic and Chemical Modifiers of a CUG Toxicity Model in Drosophila
title_sort genetic and chemical modifiers of a cug toxicity model in drosophila
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2220037/
https://www.ncbi.nlm.nih.gov/pubmed/18270582
http://dx.doi.org/10.1371/journal.pone.0001595
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