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FUBP1: a new protagonist in splicing regulation of the DMD gene

We investigated the molecular mechanisms for in-frame skipping of DMD exon 39 caused by the nonsense c.5480T>A mutation in a patient with Becker muscular dystrophy. RNase-assisted pull down assay coupled with mass spectrometry revealed that the mutant RNA probe specifically recruits hnRNPA1, hnRN...

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Autores principales: Miro, Julie, Laaref, Abdelhamid Mahdi, Rofidal, Valérie, Lagrafeuille, Rosyne, Hem, Sonia, Thorel, Delphine, Méchin, Déborah, Mamchaoui, Kamel, Mouly, Vincent, Claustres, Mireille, Tuffery-Giraud, Sylvie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
RNA
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4344520/
https://www.ncbi.nlm.nih.gov/pubmed/25662218
http://dx.doi.org/10.1093/nar/gkv086
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author Miro, Julie
Laaref, Abdelhamid Mahdi
Rofidal, Valérie
Lagrafeuille, Rosyne
Hem, Sonia
Thorel, Delphine
Méchin, Déborah
Mamchaoui, Kamel
Mouly, Vincent
Claustres, Mireille
Tuffery-Giraud, Sylvie
author_facet Miro, Julie
Laaref, Abdelhamid Mahdi
Rofidal, Valérie
Lagrafeuille, Rosyne
Hem, Sonia
Thorel, Delphine
Méchin, Déborah
Mamchaoui, Kamel
Mouly, Vincent
Claustres, Mireille
Tuffery-Giraud, Sylvie
author_sort Miro, Julie
collection PubMed
description We investigated the molecular mechanisms for in-frame skipping of DMD exon 39 caused by the nonsense c.5480T>A mutation in a patient with Becker muscular dystrophy. RNase-assisted pull down assay coupled with mass spectrometry revealed that the mutant RNA probe specifically recruits hnRNPA1, hnRNPA2/B1 and DAZAP1. Functional studies in a human myoblast cell line transfected with DMD minigenes confirmed the splicing inhibitory activity of hnRNPA1 and hnRNPA2/B1, and showed that DAZAP1, also known to activate splicing, acts negatively in the context of the mutated exon 39. Furthermore, we uncovered that recognition of endogenous DMD exon 39 in muscle cells is promoted by FUSE binding protein 1 (FUBP1), a multifunctional DNA- and RNA-binding protein whose role in splicing is largely unknown. By serial deletion and mutagenesis studies in minigenes, we delineated a functional intronic splicing enhancer (ISE) in intron 38. FUBP1 recruitment to the RNA sequence containing the ISE was established by RNA pull down and RNA EMSA, and further confirmed by RNA-ChIP on endogenous DMD pre-mRNA. This study provides new insights about the splicing regulation of DMD exon 39, highlighting the emerging role of FUBP1 in splicing and describing the first ISE for constitutive exon inclusion in the mature DMD transcript.
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spelling pubmed-43445202015-03-17 FUBP1: a new protagonist in splicing regulation of the DMD gene Miro, Julie Laaref, Abdelhamid Mahdi Rofidal, Valérie Lagrafeuille, Rosyne Hem, Sonia Thorel, Delphine Méchin, Déborah Mamchaoui, Kamel Mouly, Vincent Claustres, Mireille Tuffery-Giraud, Sylvie Nucleic Acids Res RNA We investigated the molecular mechanisms for in-frame skipping of DMD exon 39 caused by the nonsense c.5480T>A mutation in a patient with Becker muscular dystrophy. RNase-assisted pull down assay coupled with mass spectrometry revealed that the mutant RNA probe specifically recruits hnRNPA1, hnRNPA2/B1 and DAZAP1. Functional studies in a human myoblast cell line transfected with DMD minigenes confirmed the splicing inhibitory activity of hnRNPA1 and hnRNPA2/B1, and showed that DAZAP1, also known to activate splicing, acts negatively in the context of the mutated exon 39. Furthermore, we uncovered that recognition of endogenous DMD exon 39 in muscle cells is promoted by FUSE binding protein 1 (FUBP1), a multifunctional DNA- and RNA-binding protein whose role in splicing is largely unknown. By serial deletion and mutagenesis studies in minigenes, we delineated a functional intronic splicing enhancer (ISE) in intron 38. FUBP1 recruitment to the RNA sequence containing the ISE was established by RNA pull down and RNA EMSA, and further confirmed by RNA-ChIP on endogenous DMD pre-mRNA. This study provides new insights about the splicing regulation of DMD exon 39, highlighting the emerging role of FUBP1 in splicing and describing the first ISE for constitutive exon inclusion in the mature DMD transcript. Oxford University Press 2015-02-27 2015-02-06 /pmc/articles/PMC4344520/ /pubmed/25662218 http://dx.doi.org/10.1093/nar/gkv086 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle RNA
Miro, Julie
Laaref, Abdelhamid Mahdi
Rofidal, Valérie
Lagrafeuille, Rosyne
Hem, Sonia
Thorel, Delphine
Méchin, Déborah
Mamchaoui, Kamel
Mouly, Vincent
Claustres, Mireille
Tuffery-Giraud, Sylvie
FUBP1: a new protagonist in splicing regulation of the DMD gene
title FUBP1: a new protagonist in splicing regulation of the DMD gene
title_full FUBP1: a new protagonist in splicing regulation of the DMD gene
title_fullStr FUBP1: a new protagonist in splicing regulation of the DMD gene
title_full_unstemmed FUBP1: a new protagonist in splicing regulation of the DMD gene
title_short FUBP1: a new protagonist in splicing regulation of the DMD gene
title_sort fubp1: a new protagonist in splicing regulation of the dmd gene
topic RNA
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4344520/
https://www.ncbi.nlm.nih.gov/pubmed/25662218
http://dx.doi.org/10.1093/nar/gkv086
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