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Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets

Ullrich congenital muscular dystrophy (UCMD), caused by collagen VI deficiency, is a common congenital muscular dystrophy. At present, the role of collagen VI in muscle and the mechanism of disease are not fully understood. To address this we have applied microarrays to analyse the transcriptome of...

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Autores principales: Paco, Sonia, Kalko, Susana G., Jou, Cristina, Rodríguez, María A., Corbera, Joan, Muntoni, Francesco, Feng, Lucy, Rivas, Eloy, Torner, Ferran, Gualandi, Francesca, Gomez-Foix, Anna M., Ferrer, Anna, Ortez, Carlos, Nascimento, Andrés, Colomer, Jaume, Jimenez-Mallebrera, Cecilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3819505/
https://www.ncbi.nlm.nih.gov/pubmed/24223098
http://dx.doi.org/10.1371/journal.pone.0077430
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author Paco, Sonia
Kalko, Susana G.
Jou, Cristina
Rodríguez, María A.
Corbera, Joan
Muntoni, Francesco
Feng, Lucy
Rivas, Eloy
Torner, Ferran
Gualandi, Francesca
Gomez-Foix, Anna M.
Ferrer, Anna
Ortez, Carlos
Nascimento, Andrés
Colomer, Jaume
Jimenez-Mallebrera, Cecilia
author_facet Paco, Sonia
Kalko, Susana G.
Jou, Cristina
Rodríguez, María A.
Corbera, Joan
Muntoni, Francesco
Feng, Lucy
Rivas, Eloy
Torner, Ferran
Gualandi, Francesca
Gomez-Foix, Anna M.
Ferrer, Anna
Ortez, Carlos
Nascimento, Andrés
Colomer, Jaume
Jimenez-Mallebrera, Cecilia
author_sort Paco, Sonia
collection PubMed
description Ullrich congenital muscular dystrophy (UCMD), caused by collagen VI deficiency, is a common congenital muscular dystrophy. At present, the role of collagen VI in muscle and the mechanism of disease are not fully understood. To address this we have applied microarrays to analyse the transcriptome of UCMD muscle and compare it to healthy muscle and other muscular dystrophies. We identified 389 genes which are differentially regulated in UCMD relative to controls. In addition, there were 718 genes differentially expressed between UCMD and dystrophin deficient muscle. In contrast, only 29 genes were altered relative to other congenital muscular dystrophies. Changes in gene expression were confirmed by real-time PCR. The set of regulated genes was analysed by Gene Ontology, KEGG pathways and Ingenuity Pathway analysis to reveal the molecular functions and gene networks associated with collagen VI defects. The most significantly regulated pathways were those involved in muscle regeneration, extracellular matrix remodelling and inflammation. We characterised the immune response in UCMD biopsies as being mainly mediated via M2 macrophages and the complement pathway indicating that anti-inflammatory treatment may be beneficial to UCMD as for other dystrophies. We studied the immunolocalisation of ECM components and found that biglycan, a collagen VI interacting proteoglycan, was reduced in the basal lamina of UCMD patients. We propose that biglycan reduction is secondary to collagen VI loss and that it may be contributing towards UCMD pathophysiology. Consequently, strategies aimed at over-expressing biglycan and restore the link between the muscle cell surface and the extracellular matrix should be considered.
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spelling pubmed-38195052013-11-12 Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets Paco, Sonia Kalko, Susana G. Jou, Cristina Rodríguez, María A. Corbera, Joan Muntoni, Francesco Feng, Lucy Rivas, Eloy Torner, Ferran Gualandi, Francesca Gomez-Foix, Anna M. Ferrer, Anna Ortez, Carlos Nascimento, Andrés Colomer, Jaume Jimenez-Mallebrera, Cecilia PLoS One Research Article Ullrich congenital muscular dystrophy (UCMD), caused by collagen VI deficiency, is a common congenital muscular dystrophy. At present, the role of collagen VI in muscle and the mechanism of disease are not fully understood. To address this we have applied microarrays to analyse the transcriptome of UCMD muscle and compare it to healthy muscle and other muscular dystrophies. We identified 389 genes which are differentially regulated in UCMD relative to controls. In addition, there were 718 genes differentially expressed between UCMD and dystrophin deficient muscle. In contrast, only 29 genes were altered relative to other congenital muscular dystrophies. Changes in gene expression were confirmed by real-time PCR. The set of regulated genes was analysed by Gene Ontology, KEGG pathways and Ingenuity Pathway analysis to reveal the molecular functions and gene networks associated with collagen VI defects. The most significantly regulated pathways were those involved in muscle regeneration, extracellular matrix remodelling and inflammation. We characterised the immune response in UCMD biopsies as being mainly mediated via M2 macrophages and the complement pathway indicating that anti-inflammatory treatment may be beneficial to UCMD as for other dystrophies. We studied the immunolocalisation of ECM components and found that biglycan, a collagen VI interacting proteoglycan, was reduced in the basal lamina of UCMD patients. We propose that biglycan reduction is secondary to collagen VI loss and that it may be contributing towards UCMD pathophysiology. Consequently, strategies aimed at over-expressing biglycan and restore the link between the muscle cell surface and the extracellular matrix should be considered. Public Library of Science 2013-10-11 /pmc/articles/PMC3819505/ /pubmed/24223098 http://dx.doi.org/10.1371/journal.pone.0077430 Text en © 2013 Paco 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
Paco, Sonia
Kalko, Susana G.
Jou, Cristina
Rodríguez, María A.
Corbera, Joan
Muntoni, Francesco
Feng, Lucy
Rivas, Eloy
Torner, Ferran
Gualandi, Francesca
Gomez-Foix, Anna M.
Ferrer, Anna
Ortez, Carlos
Nascimento, Andrés
Colomer, Jaume
Jimenez-Mallebrera, Cecilia
Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title_full Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title_fullStr Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title_full_unstemmed Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title_short Gene Expression Profiling Identifies Molecular Pathways Associated with Collagen VI Deficiency and Provides Novel Therapeutic Targets
title_sort gene expression profiling identifies molecular pathways associated with collagen vi deficiency and provides novel therapeutic targets
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3819505/
https://www.ncbi.nlm.nih.gov/pubmed/24223098
http://dx.doi.org/10.1371/journal.pone.0077430
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