Cargando…

Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant

BACKGROUND: We studied a family including two half-siblings, sharing the same mother, affected by slowly progressive, adult-onset neurological syndromes. In spite of the diversity of the clinical features, characterized by a mild movement disorder with cognitive impairment in the elder patient, and...

Descripción completa

Detalles Bibliográficos
Autores principales: Melchionda, Laura, Fang, Mingyan, Wang, Hairong, Fugnanesi, Valeria, Morbin, Michela, Liu, Xuanzhu, Li, Wenyan, Ceccherini, Isabella, Farina, Laura, Savoiardo, Mario, D’Adamo, Pio, Zhang, Jianguo, Costa, Alfredo, Ravaglia, Sabrina, Ghezzi, Daniele, Zeviani, Massimo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654953/
https://www.ncbi.nlm.nih.gov/pubmed/23634874
http://dx.doi.org/10.1186/1750-1172-8-66
_version_ 1782269799590526976
author Melchionda, Laura
Fang, Mingyan
Wang, Hairong
Fugnanesi, Valeria
Morbin, Michela
Liu, Xuanzhu
Li, Wenyan
Ceccherini, Isabella
Farina, Laura
Savoiardo, Mario
D’Adamo, Pio
Zhang, Jianguo
Costa, Alfredo
Ravaglia, Sabrina
Ghezzi, Daniele
Zeviani, Massimo
author_facet Melchionda, Laura
Fang, Mingyan
Wang, Hairong
Fugnanesi, Valeria
Morbin, Michela
Liu, Xuanzhu
Li, Wenyan
Ceccherini, Isabella
Farina, Laura
Savoiardo, Mario
D’Adamo, Pio
Zhang, Jianguo
Costa, Alfredo
Ravaglia, Sabrina
Ghezzi, Daniele
Zeviani, Massimo
author_sort Melchionda, Laura
collection PubMed
description BACKGROUND: We studied a family including two half-siblings, sharing the same mother, affected by slowly progressive, adult-onset neurological syndromes. In spite of the diversity of the clinical features, characterized by a mild movement disorder with cognitive impairment in the elder patient, and severe motor-neuron disease (MND) in her half-brother, the brain Magnetic Resonance Imaging (MRI) features were compatible with adult-onset Alexander’s disease (AOAD), suggesting different expression of the same, genetically determined, condition. METHODS: Since mutations in the alpha isoform of glial fibrillary acidic protein, GFAP-α, the only cause so far known of AOAD, were excluded, we applied exome Next Generation Sequencing (NGS) to identify gene variants, which were then functionally validated by molecular characterization of recombinant and patient-derived cells. RESULTS: Exome-NGS revealed a mutation in a previously neglected GFAP isoform, GFAP-ϵ, which disrupts the GFAP-associated filamentous cytoskeletal meshwork of astrocytoma cells. To shed light on the different clinical features in the two patients, we sought for variants in other genes. The male patient had a mutation, absent in his half-sister, in X-linked histone deacetylase 6, a candidate MND susceptibility gene. CONCLUSIONS: Exome-NGS is an unbiased approach that not only helps identify new disease genes, but may also contribute to elucidate phenotypic expression.
format Online
Article
Text
id pubmed-3654953
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher BioMed Central
record_format MEDLINE/PubMed
spelling pubmed-36549532013-05-16 Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant Melchionda, Laura Fang, Mingyan Wang, Hairong Fugnanesi, Valeria Morbin, Michela Liu, Xuanzhu Li, Wenyan Ceccherini, Isabella Farina, Laura Savoiardo, Mario D’Adamo, Pio Zhang, Jianguo Costa, Alfredo Ravaglia, Sabrina Ghezzi, Daniele Zeviani, Massimo Orphanet J Rare Dis Research BACKGROUND: We studied a family including two half-siblings, sharing the same mother, affected by slowly progressive, adult-onset neurological syndromes. In spite of the diversity of the clinical features, characterized by a mild movement disorder with cognitive impairment in the elder patient, and severe motor-neuron disease (MND) in her half-brother, the brain Magnetic Resonance Imaging (MRI) features were compatible with adult-onset Alexander’s disease (AOAD), suggesting different expression of the same, genetically determined, condition. METHODS: Since mutations in the alpha isoform of glial fibrillary acidic protein, GFAP-α, the only cause so far known of AOAD, were excluded, we applied exome Next Generation Sequencing (NGS) to identify gene variants, which were then functionally validated by molecular characterization of recombinant and patient-derived cells. RESULTS: Exome-NGS revealed a mutation in a previously neglected GFAP isoform, GFAP-ϵ, which disrupts the GFAP-associated filamentous cytoskeletal meshwork of astrocytoma cells. To shed light on the different clinical features in the two patients, we sought for variants in other genes. The male patient had a mutation, absent in his half-sister, in X-linked histone deacetylase 6, a candidate MND susceptibility gene. CONCLUSIONS: Exome-NGS is an unbiased approach that not only helps identify new disease genes, but may also contribute to elucidate phenotypic expression. BioMed Central 2013-05-01 /pmc/articles/PMC3654953/ /pubmed/23634874 http://dx.doi.org/10.1186/1750-1172-8-66 Text en Copyright © 2013 Melchionda 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
Melchionda, Laura
Fang, Mingyan
Wang, Hairong
Fugnanesi, Valeria
Morbin, Michela
Liu, Xuanzhu
Li, Wenyan
Ceccherini, Isabella
Farina, Laura
Savoiardo, Mario
D’Adamo, Pio
Zhang, Jianguo
Costa, Alfredo
Ravaglia, Sabrina
Ghezzi, Daniele
Zeviani, Massimo
Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title_full Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title_fullStr Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title_full_unstemmed Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title_short Adult-onset Alexander disease, associated with a mutation in an alternative GFAP transcript, may be phenotypically modulated by a non-neutral HDAC6 variant
title_sort adult-onset alexander disease, associated with a mutation in an alternative gfap transcript, may be phenotypically modulated by a non-neutral hdac6 variant
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3654953/
https://www.ncbi.nlm.nih.gov/pubmed/23634874
http://dx.doi.org/10.1186/1750-1172-8-66
work_keys_str_mv AT melchiondalaura adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT fangmingyan adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT wanghairong adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT fugnanesivaleria adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT morbinmichela adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT liuxuanzhu adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT liwenyan adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT ceccheriniisabella adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT farinalaura adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT savoiardomario adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT dadamopio adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT zhangjianguo adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT costaalfredo adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT ravagliasabrina adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT ghezzidaniele adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant
AT zevianimassimo adultonsetalexanderdiseaseassociatedwithamutationinanalternativegfaptranscriptmaybephenotypicallymodulatedbyanonneutralhdac6variant