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Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder

Autism spectrum disorders (ASDs) constitute a group of severe neurodevelopmental conditions with complex multifactorial etiology. In order to explore the hypothesis that submicroscopic genomic rearrangements underlie some ASD cases, we have analyzed 96 Spanish patients with idiopathic ASD after exte...

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Autores principales: Cuscó, Ivon, Medrano, Andrés, Gener, Blanca, Vilardell, Mireia, Gallastegui, Fátima, Villa, Olaya, González, Eva, Rodríguez-Santiago, Benjamín, Vilella, Elisabet, Del Campo, Miguel, Pérez-Jurado, Luis A.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2671988/
https://www.ncbi.nlm.nih.gov/pubmed/19246517
http://dx.doi.org/10.1093/hmg/ddp092
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author Cuscó, Ivon
Medrano, Andrés
Gener, Blanca
Vilardell, Mireia
Gallastegui, Fátima
Villa, Olaya
González, Eva
Rodríguez-Santiago, Benjamín
Vilella, Elisabet
Del Campo, Miguel
Pérez-Jurado, Luis A.
author_facet Cuscó, Ivon
Medrano, Andrés
Gener, Blanca
Vilardell, Mireia
Gallastegui, Fátima
Villa, Olaya
González, Eva
Rodríguez-Santiago, Benjamín
Vilella, Elisabet
Del Campo, Miguel
Pérez-Jurado, Luis A.
author_sort Cuscó, Ivon
collection PubMed
description Autism spectrum disorders (ASDs) constitute a group of severe neurodevelopmental conditions with complex multifactorial etiology. In order to explore the hypothesis that submicroscopic genomic rearrangements underlie some ASD cases, we have analyzed 96 Spanish patients with idiopathic ASD after extensive clinical and laboratory screening, by array comparative genomic hybridization (aCGH) using a homemade bacterial artificial chromosome (BAC) array. Only 13 of the 238 detected copy number alterations, ranging in size from 89 kb to 2.4 Mb, were present specifically in the autistic population (12 out of 96 individuals, 12.5%). Following validation by additional molecular techniques, we have characterized these novel candidate regions containing 24 different genes including alterations in two previously reported regions of chromosome 7 associated with the ASD phenotype. Some of the genes located in ASD-specific copy number variants act in common pathways, most notably the phosphatidylinositol signaling and the glutamatergic synapse, both known to be affected in several genetic syndromes related with autism and previously associated with ASD. Our work supports the idea that the functional alteration of genes in related neuronal networks is involved in the etiology of the ASD phenotype and confirms a significant diagnostic yield for aCGH, which should probably be included in the diagnostic workup of idiopathic ASD.
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spelling pubmed-26719882009-04-23 Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder Cuscó, Ivon Medrano, Andrés Gener, Blanca Vilardell, Mireia Gallastegui, Fátima Villa, Olaya González, Eva Rodríguez-Santiago, Benjamín Vilella, Elisabet Del Campo, Miguel Pérez-Jurado, Luis A. Hum Mol Genet Articles Autism spectrum disorders (ASDs) constitute a group of severe neurodevelopmental conditions with complex multifactorial etiology. In order to explore the hypothesis that submicroscopic genomic rearrangements underlie some ASD cases, we have analyzed 96 Spanish patients with idiopathic ASD after extensive clinical and laboratory screening, by array comparative genomic hybridization (aCGH) using a homemade bacterial artificial chromosome (BAC) array. Only 13 of the 238 detected copy number alterations, ranging in size from 89 kb to 2.4 Mb, were present specifically in the autistic population (12 out of 96 individuals, 12.5%). Following validation by additional molecular techniques, we have characterized these novel candidate regions containing 24 different genes including alterations in two previously reported regions of chromosome 7 associated with the ASD phenotype. Some of the genes located in ASD-specific copy number variants act in common pathways, most notably the phosphatidylinositol signaling and the glutamatergic synapse, both known to be affected in several genetic syndromes related with autism and previously associated with ASD. Our work supports the idea that the functional alteration of genes in related neuronal networks is involved in the etiology of the ASD phenotype and confirms a significant diagnostic yield for aCGH, which should probably be included in the diagnostic workup of idiopathic ASD. Oxford University Press 2009-05-15 2009-02-26 /pmc/articles/PMC2671988/ /pubmed/19246517 http://dx.doi.org/10.1093/hmg/ddp092 Text en © 2009. The Author(s)
spellingShingle Articles
Cuscó, Ivon
Medrano, Andrés
Gener, Blanca
Vilardell, Mireia
Gallastegui, Fátima
Villa, Olaya
González, Eva
Rodríguez-Santiago, Benjamín
Vilella, Elisabet
Del Campo, Miguel
Pérez-Jurado, Luis A.
Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title_full Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title_fullStr Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title_full_unstemmed Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title_short Autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
title_sort autism-specific copy number variants further implicate the phosphatidylinositol signaling pathway and the glutamatergic synapse in the etiology of the disorder
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2671988/
https://www.ncbi.nlm.nih.gov/pubmed/19246517
http://dx.doi.org/10.1093/hmg/ddp092
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