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RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy

Partial deletions of the gene encoding the neuronal splicing regulator RBFOX1 have been reported in a range of neurodevelopmental diseases, including idiopathic generalized epilepsy. The RBFOX1 protein and its homologues (RBFOX2 and RBFOX3) regulate alternative splicing of many neuronal transcripts...

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Autores principales: Lal, Dennis, Reinthaler, Eva M., Altmüller, Janine, Toliat, Mohammad R., Thiele, Holger, Nürnberg, Peter, Lerche, Holger, Hahn, Andreas, Møller, Rikke S., Muhle, Hiltrud, Sander, Thomas, Zimprich, Fritz, Neubauer, Bernd A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765197/
https://www.ncbi.nlm.nih.gov/pubmed/24039908
http://dx.doi.org/10.1371/journal.pone.0073323
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author Lal, Dennis
Reinthaler, Eva M.
Altmüller, Janine
Toliat, Mohammad R.
Thiele, Holger
Nürnberg, Peter
Lerche, Holger
Hahn, Andreas
Møller, Rikke S.
Muhle, Hiltrud
Sander, Thomas
Zimprich, Fritz
Neubauer, Bernd A.
author_facet Lal, Dennis
Reinthaler, Eva M.
Altmüller, Janine
Toliat, Mohammad R.
Thiele, Holger
Nürnberg, Peter
Lerche, Holger
Hahn, Andreas
Møller, Rikke S.
Muhle, Hiltrud
Sander, Thomas
Zimprich, Fritz
Neubauer, Bernd A.
author_sort Lal, Dennis
collection PubMed
description Partial deletions of the gene encoding the neuronal splicing regulator RBFOX1 have been reported in a range of neurodevelopmental diseases, including idiopathic generalized epilepsy. The RBFOX1 protein and its homologues (RBFOX2 and RBFOX3) regulate alternative splicing of many neuronal transcripts involved in the homeostatic control of neuronal excitability. In this study, we explored if structural microdeletions and exonic sequence variations in RBFOX1, RBFOX2, RBFOX3 confer susceptibility to rolandic epilepsy (RE), a common idiopathic focal childhood epilepsy. By high-density SNP array screening of 289 unrelated RE patients, we identified two hemizygous deletions, a 365 kb deletion affecting two untranslated 5′-terminal exons of RBFOX1 and a 43 kb deletion spanning exon 3 of RBFOX3. Exome sequencing of 242 RE patients revealed two novel probably deleterious variants in RBFOX1, a frameshift mutation (p.A233Vfs*74) and a hexanucleotide deletion (p.A299_A300del), and a novel nonsense mutation in RBFOX3 (p.Y287*). Although the three variants were inherited from unaffected parents, they were present in all family members exhibiting the RE trait clinically or electroencephalographically with only one exception. In contrast, no deleterious mutations of RBFOX1 and RBFOX3 were found in the exomes of 6503 non-RE subjects deposited in the Exome Variant Server database. The observed RBFOX3 exon 3 deletion and nonsense mutation suggest that RBFOX3 represents a novel risk factor for RE, indicating that exon deletions and truncating mutations of RBFOX1 and RBFOX3 contribute to the genetic variance of partial and generalized idiopathic epilepsy syndromes.
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spelling pubmed-37651972013-09-13 RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy Lal, Dennis Reinthaler, Eva M. Altmüller, Janine Toliat, Mohammad R. Thiele, Holger Nürnberg, Peter Lerche, Holger Hahn, Andreas Møller, Rikke S. Muhle, Hiltrud Sander, Thomas Zimprich, Fritz Neubauer, Bernd A. PLoS One Research Article Partial deletions of the gene encoding the neuronal splicing regulator RBFOX1 have been reported in a range of neurodevelopmental diseases, including idiopathic generalized epilepsy. The RBFOX1 protein and its homologues (RBFOX2 and RBFOX3) regulate alternative splicing of many neuronal transcripts involved in the homeostatic control of neuronal excitability. In this study, we explored if structural microdeletions and exonic sequence variations in RBFOX1, RBFOX2, RBFOX3 confer susceptibility to rolandic epilepsy (RE), a common idiopathic focal childhood epilepsy. By high-density SNP array screening of 289 unrelated RE patients, we identified two hemizygous deletions, a 365 kb deletion affecting two untranslated 5′-terminal exons of RBFOX1 and a 43 kb deletion spanning exon 3 of RBFOX3. Exome sequencing of 242 RE patients revealed two novel probably deleterious variants in RBFOX1, a frameshift mutation (p.A233Vfs*74) and a hexanucleotide deletion (p.A299_A300del), and a novel nonsense mutation in RBFOX3 (p.Y287*). Although the three variants were inherited from unaffected parents, they were present in all family members exhibiting the RE trait clinically or electroencephalographically with only one exception. In contrast, no deleterious mutations of RBFOX1 and RBFOX3 were found in the exomes of 6503 non-RE subjects deposited in the Exome Variant Server database. The observed RBFOX3 exon 3 deletion and nonsense mutation suggest that RBFOX3 represents a novel risk factor for RE, indicating that exon deletions and truncating mutations of RBFOX1 and RBFOX3 contribute to the genetic variance of partial and generalized idiopathic epilepsy syndromes. Public Library of Science 2013-09-06 /pmc/articles/PMC3765197/ /pubmed/24039908 http://dx.doi.org/10.1371/journal.pone.0073323 Text en © 2013 Lal et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lal, Dennis
Reinthaler, Eva M.
Altmüller, Janine
Toliat, Mohammad R.
Thiele, Holger
Nürnberg, Peter
Lerche, Holger
Hahn, Andreas
Møller, Rikke S.
Muhle, Hiltrud
Sander, Thomas
Zimprich, Fritz
Neubauer, Bernd A.
RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title_full RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title_fullStr RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title_full_unstemmed RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title_short RBFOX1 and RBFOX3 Mutations in Rolandic Epilepsy
title_sort rbfox1 and rbfox3 mutations in rolandic epilepsy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3765197/
https://www.ncbi.nlm.nih.gov/pubmed/24039908
http://dx.doi.org/10.1371/journal.pone.0073323
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