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Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient

Leigh syndrome (LS) is a rare progressive multi-system neurodegenerative disorder, the genetics of which is frequently difficult to resolve. Rapid determination of the genetic etiology of LS in a 5-year-old girl facilitated inclusion in Edison Pharmaceutical’s phase 2B clinical trial of EPI-743. SNP...

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Autores principales: Miller, David K., Menezes, Minal J., Simons, Cas, Riley, Lisa G., Cooper, Sandra T., Grimmond, Sean M., Thorburn, David R., Christodoulou, John, Taft, Ryan J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130626/
https://www.ncbi.nlm.nih.gov/pubmed/25118196
http://dx.doi.org/10.1371/journal.pone.0104879
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author Miller, David K.
Menezes, Minal J.
Simons, Cas
Riley, Lisa G.
Cooper, Sandra T.
Grimmond, Sean M.
Thorburn, David R.
Christodoulou, John
Taft, Ryan J.
author_facet Miller, David K.
Menezes, Minal J.
Simons, Cas
Riley, Lisa G.
Cooper, Sandra T.
Grimmond, Sean M.
Thorburn, David R.
Christodoulou, John
Taft, Ryan J.
author_sort Miller, David K.
collection PubMed
description Leigh syndrome (LS) is a rare progressive multi-system neurodegenerative disorder, the genetics of which is frequently difficult to resolve. Rapid determination of the genetic etiology of LS in a 5-year-old girl facilitated inclusion in Edison Pharmaceutical’s phase 2B clinical trial of EPI-743. SNP-arrays and high-coverage whole exome sequencing were performed on the proband, both parents and three unaffected siblings. Subsequent multi-tissue targeted high-depth mitochondrial sequencing was performed using custom long-range PCR amplicons. Tissue-specific mutant load was also assessed by qPCR. Complex I was interrogated by spectrophotometric enzyme assays and Western Blot. No putatively causal mutations were identified in nuclear-encoded genes. Analysis of low-coverage off-target mitochondrial reads revealed a previously unreported mitochondrial mutation in the proband in MT-ND3 (m.10134C>A, p.Q26K), a Complex I mitochondrial gene previously associated with LS. Targeted investigations demonstrated that this mutation was 1% heteroplasmic in the mother’s blood and homoplasmic in the proband’s blood, fibroblasts, liver and muscle. Enzyme assays revealed decreased Complex I activity. The identification of this novel LS MT-ND3 variant, the genomics of which was accomplished in less than 3.5 weeks, indicates that rapid genomic approaches may prove useful in time-sensitive cases with an unresolved genetic diagnosis.
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spelling pubmed-41306262014-08-14 Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient Miller, David K. Menezes, Minal J. Simons, Cas Riley, Lisa G. Cooper, Sandra T. Grimmond, Sean M. Thorburn, David R. Christodoulou, John Taft, Ryan J. PLoS One Research Article Leigh syndrome (LS) is a rare progressive multi-system neurodegenerative disorder, the genetics of which is frequently difficult to resolve. Rapid determination of the genetic etiology of LS in a 5-year-old girl facilitated inclusion in Edison Pharmaceutical’s phase 2B clinical trial of EPI-743. SNP-arrays and high-coverage whole exome sequencing were performed on the proband, both parents and three unaffected siblings. Subsequent multi-tissue targeted high-depth mitochondrial sequencing was performed using custom long-range PCR amplicons. Tissue-specific mutant load was also assessed by qPCR. Complex I was interrogated by spectrophotometric enzyme assays and Western Blot. No putatively causal mutations were identified in nuclear-encoded genes. Analysis of low-coverage off-target mitochondrial reads revealed a previously unreported mitochondrial mutation in the proband in MT-ND3 (m.10134C>A, p.Q26K), a Complex I mitochondrial gene previously associated with LS. Targeted investigations demonstrated that this mutation was 1% heteroplasmic in the mother’s blood and homoplasmic in the proband’s blood, fibroblasts, liver and muscle. Enzyme assays revealed decreased Complex I activity. The identification of this novel LS MT-ND3 variant, the genomics of which was accomplished in less than 3.5 weeks, indicates that rapid genomic approaches may prove useful in time-sensitive cases with an unresolved genetic diagnosis. Public Library of Science 2014-08-12 /pmc/articles/PMC4130626/ /pubmed/25118196 http://dx.doi.org/10.1371/journal.pone.0104879 Text en © 2014 Miller 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
Miller, David K.
Menezes, Minal J.
Simons, Cas
Riley, Lisa G.
Cooper, Sandra T.
Grimmond, Sean M.
Thorburn, David R.
Christodoulou, John
Taft, Ryan J.
Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title_full Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title_fullStr Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title_full_unstemmed Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title_short Rapid Identification of a Novel Complex I MT-ND3 m.10134C>A Mutation in a Leigh Syndrome Patient
title_sort rapid identification of a novel complex i mt-nd3 m.10134c>a mutation in a leigh syndrome patient
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4130626/
https://www.ncbi.nlm.nih.gov/pubmed/25118196
http://dx.doi.org/10.1371/journal.pone.0104879
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