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Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes

DMD nonsense and frameshift mutations lead to severe Duchenne muscular dystrophy while in-frame mutations lead to milder Becker muscular dystrophy. Exceptions are found in 10% of cases and the production of alternatively spliced transcripts is considered a key modifier of disease severity. Several e...

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Autores principales: Juan-Mateu, Jonàs, González-Quereda, Lidia, Rodríguez, Maria José, Verdura, Edgard, Lázaro, Kira, Jou, Cristina, Nascimento, Andrés, Jiménez-Mallebrera, Cecilia, Colomer, Jaume, Monges, Soledad, Lubieniecki, Fabiana, Foncuberta, Maria Eugenia, Pascual-Pascual, Samuel Ignacio, Molano, Jesús, Baiget, Montserrat, Gallano, Pia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607557/
https://www.ncbi.nlm.nih.gov/pubmed/23536893
http://dx.doi.org/10.1371/journal.pone.0059916
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author Juan-Mateu, Jonàs
González-Quereda, Lidia
Rodríguez, Maria José
Verdura, Edgard
Lázaro, Kira
Jou, Cristina
Nascimento, Andrés
Jiménez-Mallebrera, Cecilia
Colomer, Jaume
Monges, Soledad
Lubieniecki, Fabiana
Foncuberta, Maria Eugenia
Pascual-Pascual, Samuel Ignacio
Molano, Jesús
Baiget, Montserrat
Gallano, Pia
author_facet Juan-Mateu, Jonàs
González-Quereda, Lidia
Rodríguez, Maria José
Verdura, Edgard
Lázaro, Kira
Jou, Cristina
Nascimento, Andrés
Jiménez-Mallebrera, Cecilia
Colomer, Jaume
Monges, Soledad
Lubieniecki, Fabiana
Foncuberta, Maria Eugenia
Pascual-Pascual, Samuel Ignacio
Molano, Jesús
Baiget, Montserrat
Gallano, Pia
author_sort Juan-Mateu, Jonàs
collection PubMed
description DMD nonsense and frameshift mutations lead to severe Duchenne muscular dystrophy while in-frame mutations lead to milder Becker muscular dystrophy. Exceptions are found in 10% of cases and the production of alternatively spliced transcripts is considered a key modifier of disease severity. Several exonic mutations have been shown to induce exon-skipping, while splice site mutations result in exon-skipping or activation of cryptic splice sites. However, factors determining the splicing pathway are still unclear. Point mutations provide valuable information regarding the regulation of pre-mRNA splicing and elements defining exon identity in the DMD gene. Here we provide a comprehensive analysis of 98 point mutations related to clinical phenotype and their effect on muscle mRNA and dystrophin expression. Aberrant splicing was found in 27 mutations due to alteration of splice sites or splicing regulatory elements. Bioinformatics analysis was performed to test the ability of the available algorithms to predict consequences on mRNA and to investigate the major factors that determine the splicing pathway in mutations affecting splicing signals. Our findings suggest that the splicing pathway is highly dependent on the interplay between splice site strength and density of regulatory elements.
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spelling pubmed-36075572013-03-27 Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes Juan-Mateu, Jonàs González-Quereda, Lidia Rodríguez, Maria José Verdura, Edgard Lázaro, Kira Jou, Cristina Nascimento, Andrés Jiménez-Mallebrera, Cecilia Colomer, Jaume Monges, Soledad Lubieniecki, Fabiana Foncuberta, Maria Eugenia Pascual-Pascual, Samuel Ignacio Molano, Jesús Baiget, Montserrat Gallano, Pia PLoS One Research Article DMD nonsense and frameshift mutations lead to severe Duchenne muscular dystrophy while in-frame mutations lead to milder Becker muscular dystrophy. Exceptions are found in 10% of cases and the production of alternatively spliced transcripts is considered a key modifier of disease severity. Several exonic mutations have been shown to induce exon-skipping, while splice site mutations result in exon-skipping or activation of cryptic splice sites. However, factors determining the splicing pathway are still unclear. Point mutations provide valuable information regarding the regulation of pre-mRNA splicing and elements defining exon identity in the DMD gene. Here we provide a comprehensive analysis of 98 point mutations related to clinical phenotype and their effect on muscle mRNA and dystrophin expression. Aberrant splicing was found in 27 mutations due to alteration of splice sites or splicing regulatory elements. Bioinformatics analysis was performed to test the ability of the available algorithms to predict consequences on mRNA and to investigate the major factors that determine the splicing pathway in mutations affecting splicing signals. Our findings suggest that the splicing pathway is highly dependent on the interplay between splice site strength and density of regulatory elements. Public Library of Science 2013-03-25 /pmc/articles/PMC3607557/ /pubmed/23536893 http://dx.doi.org/10.1371/journal.pone.0059916 Text en © 2013 Juan-Mateu 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
Juan-Mateu, Jonàs
González-Quereda, Lidia
Rodríguez, Maria José
Verdura, Edgard
Lázaro, Kira
Jou, Cristina
Nascimento, Andrés
Jiménez-Mallebrera, Cecilia
Colomer, Jaume
Monges, Soledad
Lubieniecki, Fabiana
Foncuberta, Maria Eugenia
Pascual-Pascual, Samuel Ignacio
Molano, Jesús
Baiget, Montserrat
Gallano, Pia
Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title_full Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title_fullStr Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title_full_unstemmed Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title_short Interplay between DMD Point Mutations and Splicing Signals in Dystrophinopathy Phenotypes
title_sort interplay between dmd point mutations and splicing signals in dystrophinopathy phenotypes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3607557/
https://www.ncbi.nlm.nih.gov/pubmed/23536893
http://dx.doi.org/10.1371/journal.pone.0059916
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