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Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish

Autosomal recessive hereditary spastic paraplegia with thin corpus callosum (HSP-TCC) maps to the SPG11 locus in the majority of cases. Mutations in the KIAA1840 gene, encoding spatacsin, have been shown to underlie SPG11-linked HSP-TCC. The aim of this study was to perform candidate gene analysis i...

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Autores principales: Southgate, Laura, Dafou, Dimitra, Hoyle, Jacqueline, Li, Nan, Kinning, Esther, Critchley, Peter, Németh, Andrea H., Talbot, Kevin, Bindu, Parayil S., Sinha, Sanjib, Taly, Arun B., Raghavendra, Seetharam, Müller, Ferenc, Maher, Eamonn R., Trembath, Richard C.
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2944959/
https://www.ncbi.nlm.nih.gov/pubmed/20390432
http://dx.doi.org/10.1007/s10048-010-0243-8
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author Southgate, Laura
Dafou, Dimitra
Hoyle, Jacqueline
Li, Nan
Kinning, Esther
Critchley, Peter
Németh, Andrea H.
Talbot, Kevin
Bindu, Parayil S.
Sinha, Sanjib
Taly, Arun B.
Raghavendra, Seetharam
Müller, Ferenc
Maher, Eamonn R.
Trembath, Richard C.
author_facet Southgate, Laura
Dafou, Dimitra
Hoyle, Jacqueline
Li, Nan
Kinning, Esther
Critchley, Peter
Németh, Andrea H.
Talbot, Kevin
Bindu, Parayil S.
Sinha, Sanjib
Taly, Arun B.
Raghavendra, Seetharam
Müller, Ferenc
Maher, Eamonn R.
Trembath, Richard C.
author_sort Southgate, Laura
collection PubMed
description Autosomal recessive hereditary spastic paraplegia with thin corpus callosum (HSP-TCC) maps to the SPG11 locus in the majority of cases. Mutations in the KIAA1840 gene, encoding spatacsin, have been shown to underlie SPG11-linked HSP-TCC. The aim of this study was to perform candidate gene analysis in HSP-TCC subjects from Asian families and to characterize disruption of spatacsin function during zebrafish development. Homozygosity mapping and direct sequencing were used to assess the ACCPN, SPG11, and SPG21 loci in four inbred kindreds originating from the Indian subcontinent. Four novel homozygous SPG11 mutations (c.442+1G>A, c.2146C>T, c.3602_3603delAT, and c.4846C>T) were identified, predicting a loss of spatacsin function in each case. To investigate the role of spatacsin during development, we additionally ascertained the complete zebrafish spg11 ortholog by reverse transcriptase PCR and 5′ RACE. Analysis of transcript expression through whole-mount in situ hybridization demonstrated ubiquitous distribution, with highest levels detected in the brain. Morpholino antisense oligonucleotide injection was used to knock down spatacsin function in zebrafish embryos. Examination of spg11 morphant embryos revealed a range of developmental defects and CNS abnormalities, and analysis of axon pathway formation demonstrated an overall perturbation of neuronal differentiation. These data confirm loss of spatacsin as the cause of SPG11-linked HSP-TCC in Asian kindreds, expanding the mutation spectrum recognized in this disorder. This study represents the first investigation in zebrafish addressing the function of a causative gene in autosomal recessive HSP and identifies a critical role for spatacsin during early neural development in vivo. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10048-010-0243-8) contains supplementary material, which is available to authorized users.
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spelling pubmed-29449592010-10-12 Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish Southgate, Laura Dafou, Dimitra Hoyle, Jacqueline Li, Nan Kinning, Esther Critchley, Peter Németh, Andrea H. Talbot, Kevin Bindu, Parayil S. Sinha, Sanjib Taly, Arun B. Raghavendra, Seetharam Müller, Ferenc Maher, Eamonn R. Trembath, Richard C. Neurogenetics Original Article Autosomal recessive hereditary spastic paraplegia with thin corpus callosum (HSP-TCC) maps to the SPG11 locus in the majority of cases. Mutations in the KIAA1840 gene, encoding spatacsin, have been shown to underlie SPG11-linked HSP-TCC. The aim of this study was to perform candidate gene analysis in HSP-TCC subjects from Asian families and to characterize disruption of spatacsin function during zebrafish development. Homozygosity mapping and direct sequencing were used to assess the ACCPN, SPG11, and SPG21 loci in four inbred kindreds originating from the Indian subcontinent. Four novel homozygous SPG11 mutations (c.442+1G>A, c.2146C>T, c.3602_3603delAT, and c.4846C>T) were identified, predicting a loss of spatacsin function in each case. To investigate the role of spatacsin during development, we additionally ascertained the complete zebrafish spg11 ortholog by reverse transcriptase PCR and 5′ RACE. Analysis of transcript expression through whole-mount in situ hybridization demonstrated ubiquitous distribution, with highest levels detected in the brain. Morpholino antisense oligonucleotide injection was used to knock down spatacsin function in zebrafish embryos. Examination of spg11 morphant embryos revealed a range of developmental defects and CNS abnormalities, and analysis of axon pathway formation demonstrated an overall perturbation of neuronal differentiation. These data confirm loss of spatacsin as the cause of SPG11-linked HSP-TCC in Asian kindreds, expanding the mutation spectrum recognized in this disorder. This study represents the first investigation in zebrafish addressing the function of a causative gene in autosomal recessive HSP and identifies a critical role for spatacsin during early neural development in vivo. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10048-010-0243-8) contains supplementary material, which is available to authorized users. Springer-Verlag 2010-04-14 2010 /pmc/articles/PMC2944959/ /pubmed/20390432 http://dx.doi.org/10.1007/s10048-010-0243-8 Text en © The Author(s) 2010 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 Original Article
Southgate, Laura
Dafou, Dimitra
Hoyle, Jacqueline
Li, Nan
Kinning, Esther
Critchley, Peter
Németh, Andrea H.
Talbot, Kevin
Bindu, Parayil S.
Sinha, Sanjib
Taly, Arun B.
Raghavendra, Seetharam
Müller, Ferenc
Maher, Eamonn R.
Trembath, Richard C.
Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title_full Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title_fullStr Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title_full_unstemmed Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title_short Novel SPG11 mutations in Asian kindreds and disruption of spatacsin function in the zebrafish
title_sort novel spg11 mutations in asian kindreds and disruption of spatacsin function in the zebrafish
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2944959/
https://www.ncbi.nlm.nih.gov/pubmed/20390432
http://dx.doi.org/10.1007/s10048-010-0243-8
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