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Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies

BACKGROUND: Molecular characterization of collagen-VI related myopathies currently relies on standard sequencing, which yields a detection rate approximating 75-79% in Ullrich congenital muscular dystrophy (UCMD) and 60-65% in Bethlem myopathy (BM) patients as PCR-based techniques tend to miss gross...

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Autores principales: Bovolenta, Matteo, Neri, Marcella, Martoni, Elena, Urciuolo, Anna, Sabatelli, Patrizia, Fabris, Marina, Grumati, Paolo, Mercuri, Eugenio, Bertini, Enrico, Merlini, Luciano, Bonaldo, Paolo, Ferlini, Alessandra, Gualandi, Francesca
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2850895/
https://www.ncbi.nlm.nih.gov/pubmed/20302629
http://dx.doi.org/10.1186/1471-2350-11-44
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author Bovolenta, Matteo
Neri, Marcella
Martoni, Elena
Urciuolo, Anna
Sabatelli, Patrizia
Fabris, Marina
Grumati, Paolo
Mercuri, Eugenio
Bertini, Enrico
Merlini, Luciano
Bonaldo, Paolo
Ferlini, Alessandra
Gualandi, Francesca
author_facet Bovolenta, Matteo
Neri, Marcella
Martoni, Elena
Urciuolo, Anna
Sabatelli, Patrizia
Fabris, Marina
Grumati, Paolo
Mercuri, Eugenio
Bertini, Enrico
Merlini, Luciano
Bonaldo, Paolo
Ferlini, Alessandra
Gualandi, Francesca
author_sort Bovolenta, Matteo
collection PubMed
description BACKGROUND: Molecular characterization of collagen-VI related myopathies currently relies on standard sequencing, which yields a detection rate approximating 75-79% in Ullrich congenital muscular dystrophy (UCMD) and 60-65% in Bethlem myopathy (BM) patients as PCR-based techniques tend to miss gross genomic rearrangements as well as copy number variations (CNVs) in both the coding sequence and intronic regions. METHODS: We have designed a custom oligonucleotide CGH array in order to investigate the presence of CNVs in the coding and non-coding regions of COL6A1, A2, A3, A5 and A6 genes and a group of genes functionally related to collagen VI. A cohort of 12 patients with UCMD/BM negative at sequencing analysis and 2 subjects carrying a single COL6 mutation whose clinical phenotype was not explicable by inheritance were selected and the occurrence of allelic and genetic heterogeneity explored. RESULTS: A deletion within intron 1A of the COL6A2 gene, occurring in compound heterozygosity with a small deletion in exon 28, previously detected by routine sequencing, was identified in a BM patient. RNA studies showed monoallelic transcription of the COL6A2 gene, thus elucidating the functional effect of the intronic deletion. No pathogenic mutations were identified in the remaining analyzed patients, either within COL6A genes, or in genes functionally related to collagen VI. CONCLUSIONS: Our custom CGH array may represent a useful complementary diagnostic tool, especially in recessive forms of the disease, when only one mutant allele is detected by standard sequencing. The intronic deletion we identified represents the first example of a pure intronic mutation in COL6A genes.
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spelling pubmed-28508952010-04-08 Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies Bovolenta, Matteo Neri, Marcella Martoni, Elena Urciuolo, Anna Sabatelli, Patrizia Fabris, Marina Grumati, Paolo Mercuri, Eugenio Bertini, Enrico Merlini, Luciano Bonaldo, Paolo Ferlini, Alessandra Gualandi, Francesca BMC Med Genet Research Article BACKGROUND: Molecular characterization of collagen-VI related myopathies currently relies on standard sequencing, which yields a detection rate approximating 75-79% in Ullrich congenital muscular dystrophy (UCMD) and 60-65% in Bethlem myopathy (BM) patients as PCR-based techniques tend to miss gross genomic rearrangements as well as copy number variations (CNVs) in both the coding sequence and intronic regions. METHODS: We have designed a custom oligonucleotide CGH array in order to investigate the presence of CNVs in the coding and non-coding regions of COL6A1, A2, A3, A5 and A6 genes and a group of genes functionally related to collagen VI. A cohort of 12 patients with UCMD/BM negative at sequencing analysis and 2 subjects carrying a single COL6 mutation whose clinical phenotype was not explicable by inheritance were selected and the occurrence of allelic and genetic heterogeneity explored. RESULTS: A deletion within intron 1A of the COL6A2 gene, occurring in compound heterozygosity with a small deletion in exon 28, previously detected by routine sequencing, was identified in a BM patient. RNA studies showed monoallelic transcription of the COL6A2 gene, thus elucidating the functional effect of the intronic deletion. No pathogenic mutations were identified in the remaining analyzed patients, either within COL6A genes, or in genes functionally related to collagen VI. CONCLUSIONS: Our custom CGH array may represent a useful complementary diagnostic tool, especially in recessive forms of the disease, when only one mutant allele is detected by standard sequencing. The intronic deletion we identified represents the first example of a pure intronic mutation in COL6A genes. BioMed Central 2010-03-19 /pmc/articles/PMC2850895/ /pubmed/20302629 http://dx.doi.org/10.1186/1471-2350-11-44 Text en Copyright ©2010 Bovolenta et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Bovolenta, Matteo
Neri, Marcella
Martoni, Elena
Urciuolo, Anna
Sabatelli, Patrizia
Fabris, Marina
Grumati, Paolo
Mercuri, Eugenio
Bertini, Enrico
Merlini, Luciano
Bonaldo, Paolo
Ferlini, Alessandra
Gualandi, Francesca
Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title_full Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title_fullStr Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title_full_unstemmed Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title_short Identification of a deep intronic mutation in the COL6A2 gene by a novel custom oligonucleotide CGH array designed to explore allelic and genetic heterogeneity in collagen VI-related myopathies
title_sort identification of a deep intronic mutation in the col6a2 gene by a novel custom oligonucleotide cgh array designed to explore allelic and genetic heterogeneity in collagen vi-related myopathies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2850895/
https://www.ncbi.nlm.nih.gov/pubmed/20302629
http://dx.doi.org/10.1186/1471-2350-11-44
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