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Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission
BACKGROUND AND OBJECTIVE: Congenital myasthenic syndromes are rare inherited disorders characterized by fatigable weakness caused by malfunction of the neuromuscular junction. We performed whole exome sequencing to unravel the genetic aetiology in an English sib pair with clinical features suggestiv...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
2014
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746751/ https://www.ncbi.nlm.nih.gov/pubmed/26870663 http://dx.doi.org/10.3233/JND-140021 |
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author | Chaouch, Amina Porcelli, Vito Cox, Daniel Edvardson, Shimon Scarcia, Pasquale De Grassi, Anna Pierri, Ciro L. Cossins, Judith Laval, Steven H. Griffin, Helen Müller, Juliane S. Evangelista, Teresinha Töpf, Ana Abicht, Angela Huebner, Angela von der Hagen, Maja Bushby, Kate Straub, Volker Horvath, Rita Elpeleg, Orly Palace, Jacqueline Senderek, Jan Beeson, David Palmieri, Luigi Lochmüller, Hanns |
author_facet | Chaouch, Amina Porcelli, Vito Cox, Daniel Edvardson, Shimon Scarcia, Pasquale De Grassi, Anna Pierri, Ciro L. Cossins, Judith Laval, Steven H. Griffin, Helen Müller, Juliane S. Evangelista, Teresinha Töpf, Ana Abicht, Angela Huebner, Angela von der Hagen, Maja Bushby, Kate Straub, Volker Horvath, Rita Elpeleg, Orly Palace, Jacqueline Senderek, Jan Beeson, David Palmieri, Luigi Lochmüller, Hanns |
author_sort | Chaouch, Amina |
collection | PubMed |
description | BACKGROUND AND OBJECTIVE: Congenital myasthenic syndromes are rare inherited disorders characterized by fatigable weakness caused by malfunction of the neuromuscular junction. We performed whole exome sequencing to unravel the genetic aetiology in an English sib pair with clinical features suggestive of congenital myasthenia. METHODS: We used homozygosity mapping and whole exome sequencing to identify the candidate gene variants. Mutant protein expression and function were assessed in vitro and a knockdown zebrafish model was generated to assess neuromuscular junction development. RESULTS: We identified a novel homozygous missense mutation in the SLC25A1 gene, encoding the mitochondrial citrate carrier. Mutant SLC25A1 showed abnormal carrier function. SLC25A1 has recently been linked to a severe, often lethal clinical phenotype. Our patients had a milder phenotype presenting primarily as a neuromuscular (NMJ) junction defect. Of note, a previously reported patient with different compound heterozygous missense mutations of SLC25A1 has since been shown to suffer from a neuromuscular transmission defect. Using knockdown of SLC25A1 expression in zebrafish, we were able to mirror the human disease in terms of variable brain, eye and cardiac involvement. Importantly, we show clear abnormalities in the neuromuscular junction, regardless of the severity of the phenotype. CONCLUSIONS: Based on the axonal outgrowth defects seen in SLC25A1 knockdown zebrafish, we hypothesize that the neuromuscular junction impairment may be related to pre-synaptic nerve terminal abnormalities. Our findings highlight the complex machinery required to ensure efficient neuromuscular function, beyond the proteomes exclusive to the neuromuscular synapse. |
format | Online Article Text |
id | pubmed-4746751 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2014 |
record_format | MEDLINE/PubMed |
spelling | pubmed-47467512016-02-09 Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission Chaouch, Amina Porcelli, Vito Cox, Daniel Edvardson, Shimon Scarcia, Pasquale De Grassi, Anna Pierri, Ciro L. Cossins, Judith Laval, Steven H. Griffin, Helen Müller, Juliane S. Evangelista, Teresinha Töpf, Ana Abicht, Angela Huebner, Angela von der Hagen, Maja Bushby, Kate Straub, Volker Horvath, Rita Elpeleg, Orly Palace, Jacqueline Senderek, Jan Beeson, David Palmieri, Luigi Lochmüller, Hanns J Neuromuscul Dis Article BACKGROUND AND OBJECTIVE: Congenital myasthenic syndromes are rare inherited disorders characterized by fatigable weakness caused by malfunction of the neuromuscular junction. We performed whole exome sequencing to unravel the genetic aetiology in an English sib pair with clinical features suggestive of congenital myasthenia. METHODS: We used homozygosity mapping and whole exome sequencing to identify the candidate gene variants. Mutant protein expression and function were assessed in vitro and a knockdown zebrafish model was generated to assess neuromuscular junction development. RESULTS: We identified a novel homozygous missense mutation in the SLC25A1 gene, encoding the mitochondrial citrate carrier. Mutant SLC25A1 showed abnormal carrier function. SLC25A1 has recently been linked to a severe, often lethal clinical phenotype. Our patients had a milder phenotype presenting primarily as a neuromuscular (NMJ) junction defect. Of note, a previously reported patient with different compound heterozygous missense mutations of SLC25A1 has since been shown to suffer from a neuromuscular transmission defect. Using knockdown of SLC25A1 expression in zebrafish, we were able to mirror the human disease in terms of variable brain, eye and cardiac involvement. Importantly, we show clear abnormalities in the neuromuscular junction, regardless of the severity of the phenotype. CONCLUSIONS: Based on the axonal outgrowth defects seen in SLC25A1 knockdown zebrafish, we hypothesize that the neuromuscular junction impairment may be related to pre-synaptic nerve terminal abnormalities. Our findings highlight the complex machinery required to ensure efficient neuromuscular function, beyond the proteomes exclusive to the neuromuscular synapse. 2014 /pmc/articles/PMC4746751/ /pubmed/26870663 http://dx.doi.org/10.3233/JND-140021 Text en http://creativecommons.org/licenses/by-nc/4.0/ This article is published online with Open Access and distributed under the terms of the Creative Commons Attribution Non-Commercial License. |
spellingShingle | Article Chaouch, Amina Porcelli, Vito Cox, Daniel Edvardson, Shimon Scarcia, Pasquale De Grassi, Anna Pierri, Ciro L. Cossins, Judith Laval, Steven H. Griffin, Helen Müller, Juliane S. Evangelista, Teresinha Töpf, Ana Abicht, Angela Huebner, Angela von der Hagen, Maja Bushby, Kate Straub, Volker Horvath, Rita Elpeleg, Orly Palace, Jacqueline Senderek, Jan Beeson, David Palmieri, Luigi Lochmüller, Hanns Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title | Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title_full | Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title_fullStr | Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title_full_unstemmed | Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title_short | Mutations in the Mitochondrial Citrate Carrier SLC25A1 are Associated with Impaired Neuromuscular Transmission |
title_sort | mutations in the mitochondrial citrate carrier slc25a1 are associated with impaired neuromuscular transmission |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4746751/ https://www.ncbi.nlm.nih.gov/pubmed/26870663 http://dx.doi.org/10.3233/JND-140021 |
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