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A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3

Autism spectrum disorder is a genetically complex and clinically heterogeneous neurodevelopmental disorder. A recent study by the Autism Genome Project (AGP) used 1M single-nucleotide polymorphism arrays to show that rare genic copy number variants (CNVs), possibly acting in tandem, play a significa...

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Autores principales: Pagnamenta, Alistair T., Holt, Richard, Yusuf, Mohammed, Pinto, Dalila, Wing, Kirsty, Betancur, Catalina, Scherer, Stephen W., Volpi, Emanuela V., Monaco, Anthony P.
Formato: Texto
Lenguaje:English
Publicado: Springer US 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3105230/
https://www.ncbi.nlm.nih.gov/pubmed/21484199
http://dx.doi.org/10.1007/s11689-011-9076-5
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author Pagnamenta, Alistair T.
Holt, Richard
Yusuf, Mohammed
Pinto, Dalila
Wing, Kirsty
Betancur, Catalina
Scherer, Stephen W.
Volpi, Emanuela V.
Monaco, Anthony P.
author_facet Pagnamenta, Alistair T.
Holt, Richard
Yusuf, Mohammed
Pinto, Dalila
Wing, Kirsty
Betancur, Catalina
Scherer, Stephen W.
Volpi, Emanuela V.
Monaco, Anthony P.
author_sort Pagnamenta, Alistair T.
collection PubMed
description Autism spectrum disorder is a genetically complex and clinically heterogeneous neurodevelopmental disorder. A recent study by the Autism Genome Project (AGP) used 1M single-nucleotide polymorphism arrays to show that rare genic copy number variants (CNVs), possibly acting in tandem, play a significant role in the genetic aetiology of this condition. In this study, we describe the phenotypic and genomic characterisation of a multiplex autism family from the AGP study that was found to harbour a duplication of exons 31–44 of the Duchenne/Becker muscular dystrophy gene DMD and also a rare deletion involving exons 1–9 of TRPM3. Further characterisation of these extremely rare CNVs was carried out using quantitative PCR, fluorescent in situ hybridisation, long-range PCR amplification and sequencing of junction fragments. The maternal chrX:32,097,213-32,321,945 tandem duplication and paternal chr9:72,480,413-73,064,196 deletion (NCBI build 36 coordinates) were transmitted to both affected boys, potentially signifying a multi-hit mechanism. The DMD reading frame rule predicts a Becker phenotype, characterised by later onset and milder symptoms. When last evaluated, neither child had developed signs of muscular dystrophy. These data are consistent with a degree of comorbidity between autism and muscular dystrophy and suggest that genomic background as well as the position of the mutation within the DMD gene may impact on the neurological correlates of Duchenne/Becker muscular dystrophy. Finally, communicating unexpected findings such as these back to families raises a number of ethical questions, which are discussed. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11689-011-9076-5) contains supplementary material, which is available to authorized users.
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spelling pubmed-31052302011-07-14 A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3 Pagnamenta, Alistair T. Holt, Richard Yusuf, Mohammed Pinto, Dalila Wing, Kirsty Betancur, Catalina Scherer, Stephen W. Volpi, Emanuela V. Monaco, Anthony P. J Neurodev Disord Article Autism spectrum disorder is a genetically complex and clinically heterogeneous neurodevelopmental disorder. A recent study by the Autism Genome Project (AGP) used 1M single-nucleotide polymorphism arrays to show that rare genic copy number variants (CNVs), possibly acting in tandem, play a significant role in the genetic aetiology of this condition. In this study, we describe the phenotypic and genomic characterisation of a multiplex autism family from the AGP study that was found to harbour a duplication of exons 31–44 of the Duchenne/Becker muscular dystrophy gene DMD and also a rare deletion involving exons 1–9 of TRPM3. Further characterisation of these extremely rare CNVs was carried out using quantitative PCR, fluorescent in situ hybridisation, long-range PCR amplification and sequencing of junction fragments. The maternal chrX:32,097,213-32,321,945 tandem duplication and paternal chr9:72,480,413-73,064,196 deletion (NCBI build 36 coordinates) were transmitted to both affected boys, potentially signifying a multi-hit mechanism. The DMD reading frame rule predicts a Becker phenotype, characterised by later onset and milder symptoms. When last evaluated, neither child had developed signs of muscular dystrophy. These data are consistent with a degree of comorbidity between autism and muscular dystrophy and suggest that genomic background as well as the position of the mutation within the DMD gene may impact on the neurological correlates of Duchenne/Becker muscular dystrophy. Finally, communicating unexpected findings such as these back to families raises a number of ethical questions, which are discussed. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s11689-011-9076-5) contains supplementary material, which is available to authorized users. Springer US 2011-02-12 /pmc/articles/PMC3105230/ /pubmed/21484199 http://dx.doi.org/10.1007/s11689-011-9076-5 Text en © The Author(s) 2011 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Article
Pagnamenta, Alistair T.
Holt, Richard
Yusuf, Mohammed
Pinto, Dalila
Wing, Kirsty
Betancur, Catalina
Scherer, Stephen W.
Volpi, Emanuela V.
Monaco, Anthony P.
A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title_full A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title_fullStr A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title_full_unstemmed A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title_short A family with autism and rare copy number variants disrupting the Duchenne/Becker muscular dystrophy gene DMD and TRPM3
title_sort family with autism and rare copy number variants disrupting the duchenne/becker muscular dystrophy gene dmd and trpm3
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3105230/
https://www.ncbi.nlm.nih.gov/pubmed/21484199
http://dx.doi.org/10.1007/s11689-011-9076-5
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