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Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes

The frequency of disease-related large rearrangements (referred to as copy-number mutations, CNMs) varies among genes, and search for these mutations has an important place in diagnostic strategies. In recent years, CGH method using custom-designed high-density oligonucleotide-based arrays allowed t...

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Autores principales: Vasson, Aurélie, Leroux, Céline, Orhant, Lucie, Boimard, Mathieu, Toussaint, Aurélie, Leroy, Chrystel, Commere, Virginie, Ghiotti, Tiffany, Deburgrave, Nathalie, Saillour, Yoann, Atlan, Isabelle, Fouveaut, Corinne, Beldjord, Cherif, Valleix, Sophie, Leturcq, France, Dodé, Catherine, Bienvenu, Thierry, Chelly, Jamel, Cossée, Mireille
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3746255/
https://www.ncbi.nlm.nih.gov/pubmed/23340513
http://dx.doi.org/10.1038/ejhg.2012.279
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author Vasson, Aurélie
Leroux, Céline
Orhant, Lucie
Boimard, Mathieu
Toussaint, Aurélie
Leroy, Chrystel
Commere, Virginie
Ghiotti, Tiffany
Deburgrave, Nathalie
Saillour, Yoann
Atlan, Isabelle
Fouveaut, Corinne
Beldjord, Cherif
Valleix, Sophie
Leturcq, France
Dodé, Catherine
Bienvenu, Thierry
Chelly, Jamel
Cossée, Mireille
author_facet Vasson, Aurélie
Leroux, Céline
Orhant, Lucie
Boimard, Mathieu
Toussaint, Aurélie
Leroy, Chrystel
Commere, Virginie
Ghiotti, Tiffany
Deburgrave, Nathalie
Saillour, Yoann
Atlan, Isabelle
Fouveaut, Corinne
Beldjord, Cherif
Valleix, Sophie
Leturcq, France
Dodé, Catherine
Bienvenu, Thierry
Chelly, Jamel
Cossée, Mireille
author_sort Vasson, Aurélie
collection PubMed
description The frequency of disease-related large rearrangements (referred to as copy-number mutations, CNMs) varies among genes, and search for these mutations has an important place in diagnostic strategies. In recent years, CGH method using custom-designed high-density oligonucleotide-based arrays allowed the development of a powerful tool for detection of alterations at the level of exons and made it possible to provide flexibility through the possibility of modeling chips. The aim of our study was to test custom-designed oligonucleotide CGH array in a diagnostic laboratory setting that analyses several genes involved in various genetic diseases, and to compare it with conventional strategies. To this end, we designed a 12-plex CGH array (135k; 135 000 probes/subarray) (Roche Nimblegen) with exonic and intronic oligonucleotide probes covering 26 genes routinely analyzed in the laboratory. We tested control samples with known CNMs and patients for whom genetic causes underlying their disorders were unknown. The contribution of this technique is undeniable. Indeed, it appeared reproducible, reliable and sensitive enough to detect heterozygous single-exon deletions or duplications, complex rearrangements and somatic mosaicism. In addition, it improves reliability of CNM detection and allows determination of boundaries precisely enough to direct targeted sequencing of breakpoints. All of these points, associated with the possibility of a simultaneous analysis of several genes and scalability ‘homemade' make it a valuable tool as a new diagnostic approach of CNMs.
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spelling pubmed-37462552013-09-01 Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes Vasson, Aurélie Leroux, Céline Orhant, Lucie Boimard, Mathieu Toussaint, Aurélie Leroy, Chrystel Commere, Virginie Ghiotti, Tiffany Deburgrave, Nathalie Saillour, Yoann Atlan, Isabelle Fouveaut, Corinne Beldjord, Cherif Valleix, Sophie Leturcq, France Dodé, Catherine Bienvenu, Thierry Chelly, Jamel Cossée, Mireille Eur J Hum Genet Article The frequency of disease-related large rearrangements (referred to as copy-number mutations, CNMs) varies among genes, and search for these mutations has an important place in diagnostic strategies. In recent years, CGH method using custom-designed high-density oligonucleotide-based arrays allowed the development of a powerful tool for detection of alterations at the level of exons and made it possible to provide flexibility through the possibility of modeling chips. The aim of our study was to test custom-designed oligonucleotide CGH array in a diagnostic laboratory setting that analyses several genes involved in various genetic diseases, and to compare it with conventional strategies. To this end, we designed a 12-plex CGH array (135k; 135 000 probes/subarray) (Roche Nimblegen) with exonic and intronic oligonucleotide probes covering 26 genes routinely analyzed in the laboratory. We tested control samples with known CNMs and patients for whom genetic causes underlying their disorders were unknown. The contribution of this technique is undeniable. Indeed, it appeared reproducible, reliable and sensitive enough to detect heterozygous single-exon deletions or duplications, complex rearrangements and somatic mosaicism. In addition, it improves reliability of CNM detection and allows determination of boundaries precisely enough to direct targeted sequencing of breakpoints. All of these points, associated with the possibility of a simultaneous analysis of several genes and scalability ‘homemade' make it a valuable tool as a new diagnostic approach of CNMs. Nature Publishing Group 2013-09 2013-01-23 /pmc/articles/PMC3746255/ /pubmed/23340513 http://dx.doi.org/10.1038/ejhg.2012.279 Text en Copyright © 2013 Macmillan Publishers Limited http://creativecommons.org/licenses/by-nc-nd/3.0/ This work is licensed under the Creative Commons Attribution-NonCommercial-No Derivative Works 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-nd/3.0/
spellingShingle Article
Vasson, Aurélie
Leroux, Céline
Orhant, Lucie
Boimard, Mathieu
Toussaint, Aurélie
Leroy, Chrystel
Commere, Virginie
Ghiotti, Tiffany
Deburgrave, Nathalie
Saillour, Yoann
Atlan, Isabelle
Fouveaut, Corinne
Beldjord, Cherif
Valleix, Sophie
Leturcq, France
Dodé, Catherine
Bienvenu, Thierry
Chelly, Jamel
Cossée, Mireille
Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title_full Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title_fullStr Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title_full_unstemmed Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title_short Custom oligonucleotide array-based CGH: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
title_sort custom oligonucleotide array-based cgh: a reliable diagnostic tool for detection of exonic copy-number changes in multiple targeted genes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3746255/
https://www.ncbi.nlm.nih.gov/pubmed/23340513
http://dx.doi.org/10.1038/ejhg.2012.279
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