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Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability

BACKGROUND: Tissue-specific integrative omics has the potential to reveal new genic elements important for developmental disorders. METHODS: Two pediatric patients with global developmental delay and intellectual disability phenotype underwent array-CGH genetic testing, both showing a partial deleti...

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Autores principales: Reggiani, Claudio, Coppens, Sandra, Sekhara, Tayeb, Dimov, Ivan, Pichon, Bruno, Lufin, Nicolas, Addor, Marie-Claude, Belligni, Elga Fabia, Digilio, Maria Cristina, Faletra, Flavio, Ferrero, Giovanni Battista, Gerard, Marion, Isidor, Bertrand, Joss, Shelagh, Niel-Bütschi, Florence, Perrone, Maria Dolores, Petit, Florence, Renieri, Alessandra, Romana, Serge, Topa, Alexandra, Vermeesch, Joris Robert, Lenaerts, Tom, Casimir, Georges, Abramowicz, Marc, Bontempi, Gianluca, Vilain, Catheline, Deconinck, Nicolas, Smits, Guillaume
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518101/
https://www.ncbi.nlm.nih.gov/pubmed/28724449
http://dx.doi.org/10.1186/s13073-017-0452-y
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author Reggiani, Claudio
Coppens, Sandra
Sekhara, Tayeb
Dimov, Ivan
Pichon, Bruno
Lufin, Nicolas
Addor, Marie-Claude
Belligni, Elga Fabia
Digilio, Maria Cristina
Faletra, Flavio
Ferrero, Giovanni Battista
Gerard, Marion
Isidor, Bertrand
Joss, Shelagh
Niel-Bütschi, Florence
Perrone, Maria Dolores
Petit, Florence
Renieri, Alessandra
Romana, Serge
Topa, Alexandra
Vermeesch, Joris Robert
Lenaerts, Tom
Casimir, Georges
Abramowicz, Marc
Bontempi, Gianluca
Vilain, Catheline
Deconinck, Nicolas
Smits, Guillaume
author_facet Reggiani, Claudio
Coppens, Sandra
Sekhara, Tayeb
Dimov, Ivan
Pichon, Bruno
Lufin, Nicolas
Addor, Marie-Claude
Belligni, Elga Fabia
Digilio, Maria Cristina
Faletra, Flavio
Ferrero, Giovanni Battista
Gerard, Marion
Isidor, Bertrand
Joss, Shelagh
Niel-Bütschi, Florence
Perrone, Maria Dolores
Petit, Florence
Renieri, Alessandra
Romana, Serge
Topa, Alexandra
Vermeesch, Joris Robert
Lenaerts, Tom
Casimir, Georges
Abramowicz, Marc
Bontempi, Gianluca
Vilain, Catheline
Deconinck, Nicolas
Smits, Guillaume
author_sort Reggiani, Claudio
collection PubMed
description BACKGROUND: Tissue-specific integrative omics has the potential to reveal new genic elements important for developmental disorders. METHODS: Two pediatric patients with global developmental delay and intellectual disability phenotype underwent array-CGH genetic testing, both showing a partial deletion of the DLG2 gene. From independent human and murine omics datasets, we combined copy number variations, histone modifications, developmental tissue-specific regulation, and protein data to explore the molecular mechanism at play. RESULTS: Integrating genomics, transcriptomics, and epigenomics data, we describe two novel DLG2 promoters and coding first exons expressed in human fetal brain. Their murine conservation and protein-level evidence allowed us to produce new DLG2 gene models for human and mouse. These new genic elements are deleted in 90% of 29 patients (public and in-house) showing partial deletion of the DLG2 gene. The patients’ clinical characteristics expand the neurodevelopmental phenotypic spectrum linked to DLG2 gene disruption to cognitive and behavioral categories. CONCLUSIONS: While protein-coding genes are regarded as well known, our work shows that integration of multiple omics datasets can unveil novel coding elements. From a clinical perspective, our work demonstrates that two new DLG2 promoters and exons are crucial for the neurodevelopmental phenotypes associated with this gene. In addition, our work brings evidence for the lack of cross-annotation in human versus mouse reference genomes and nucleotide versus protein databases. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-017-0452-y) contains supplementary material, which is available to authorized users.
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spelling pubmed-55181012017-08-16 Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability Reggiani, Claudio Coppens, Sandra Sekhara, Tayeb Dimov, Ivan Pichon, Bruno Lufin, Nicolas Addor, Marie-Claude Belligni, Elga Fabia Digilio, Maria Cristina Faletra, Flavio Ferrero, Giovanni Battista Gerard, Marion Isidor, Bertrand Joss, Shelagh Niel-Bütschi, Florence Perrone, Maria Dolores Petit, Florence Renieri, Alessandra Romana, Serge Topa, Alexandra Vermeesch, Joris Robert Lenaerts, Tom Casimir, Georges Abramowicz, Marc Bontempi, Gianluca Vilain, Catheline Deconinck, Nicolas Smits, Guillaume Genome Med Research BACKGROUND: Tissue-specific integrative omics has the potential to reveal new genic elements important for developmental disorders. METHODS: Two pediatric patients with global developmental delay and intellectual disability phenotype underwent array-CGH genetic testing, both showing a partial deletion of the DLG2 gene. From independent human and murine omics datasets, we combined copy number variations, histone modifications, developmental tissue-specific regulation, and protein data to explore the molecular mechanism at play. RESULTS: Integrating genomics, transcriptomics, and epigenomics data, we describe two novel DLG2 promoters and coding first exons expressed in human fetal brain. Their murine conservation and protein-level evidence allowed us to produce new DLG2 gene models for human and mouse. These new genic elements are deleted in 90% of 29 patients (public and in-house) showing partial deletion of the DLG2 gene. The patients’ clinical characteristics expand the neurodevelopmental phenotypic spectrum linked to DLG2 gene disruption to cognitive and behavioral categories. CONCLUSIONS: While protein-coding genes are regarded as well known, our work shows that integration of multiple omics datasets can unveil novel coding elements. From a clinical perspective, our work demonstrates that two new DLG2 promoters and exons are crucial for the neurodevelopmental phenotypes associated with this gene. In addition, our work brings evidence for the lack of cross-annotation in human versus mouse reference genomes and nucleotide versus protein databases. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13073-017-0452-y) contains supplementary material, which is available to authorized users. BioMed Central 2017-07-19 /pmc/articles/PMC5518101/ /pubmed/28724449 http://dx.doi.org/10.1186/s13073-017-0452-y Text en © The Author(s). 2017 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research
Reggiani, Claudio
Coppens, Sandra
Sekhara, Tayeb
Dimov, Ivan
Pichon, Bruno
Lufin, Nicolas
Addor, Marie-Claude
Belligni, Elga Fabia
Digilio, Maria Cristina
Faletra, Flavio
Ferrero, Giovanni Battista
Gerard, Marion
Isidor, Bertrand
Joss, Shelagh
Niel-Bütschi, Florence
Perrone, Maria Dolores
Petit, Florence
Renieri, Alessandra
Romana, Serge
Topa, Alexandra
Vermeesch, Joris Robert
Lenaerts, Tom
Casimir, Georges
Abramowicz, Marc
Bontempi, Gianluca
Vilain, Catheline
Deconinck, Nicolas
Smits, Guillaume
Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title_full Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title_fullStr Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title_full_unstemmed Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title_short Novel promoters and coding first exons in DLG2 linked to developmental disorders and intellectual disability
title_sort novel promoters and coding first exons in dlg2 linked to developmental disorders and intellectual disability
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5518101/
https://www.ncbi.nlm.nih.gov/pubmed/28724449
http://dx.doi.org/10.1186/s13073-017-0452-y
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