Cargando…

The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families

Isolated complex I deficiency is the most frequently observed oxidative phosphorylation defect in children with mitochondrial disease, leading to a diverse range of clinical presentations, including Leigh syndrome. For most patients the genetic cause of the biochemical defect remains unknown due to...

Descripción completa

Detalles Bibliográficos
Autores principales: Tuppen, Helen A. L., Hogan, Vanessa E., He, Langping, Blakely, Emma L., Worgan, Lisa, Al-Dosary, Mazhor, Saretzki, Gabriele, Alston, Charlotte L., Morris, Andrew A., Clarke, Michael, Jones, Simon, Devlin, Anita M., Mansour, Sahar, Chrzanowska-Lightowlers, Zofia M. A., Thorburn, David R., McFarland, Robert, Taylor, Robert W.
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947428/
https://www.ncbi.nlm.nih.gov/pubmed/20819849
http://dx.doi.org/10.1093/brain/awq232
_version_ 1782187370899046400
author Tuppen, Helen A. L.
Hogan, Vanessa E.
He, Langping
Blakely, Emma L.
Worgan, Lisa
Al-Dosary, Mazhor
Saretzki, Gabriele
Alston, Charlotte L.
Morris, Andrew A.
Clarke, Michael
Jones, Simon
Devlin, Anita M.
Mansour, Sahar
Chrzanowska-Lightowlers, Zofia M. A.
Thorburn, David R.
McFarland, Robert
Taylor, Robert W.
author_facet Tuppen, Helen A. L.
Hogan, Vanessa E.
He, Langping
Blakely, Emma L.
Worgan, Lisa
Al-Dosary, Mazhor
Saretzki, Gabriele
Alston, Charlotte L.
Morris, Andrew A.
Clarke, Michael
Jones, Simon
Devlin, Anita M.
Mansour, Sahar
Chrzanowska-Lightowlers, Zofia M. A.
Thorburn, David R.
McFarland, Robert
Taylor, Robert W.
author_sort Tuppen, Helen A. L.
collection PubMed
description Isolated complex I deficiency is the most frequently observed oxidative phosphorylation defect in children with mitochondrial disease, leading to a diverse range of clinical presentations, including Leigh syndrome. For most patients the genetic cause of the biochemical defect remains unknown due to incomplete understanding of the complex I assembly process. Nonetheless, a plethora of pathogenic mutations have been described to date in the seven mitochondrial-encoded subunits of complex I as well as in 12 of the nuclear-encoded subunits and in six assembly factors. Whilst several mitochondrial DNA mutations are recurrent, the majority of these mutations are reported in single families. We have sequenced core structural and functional nuclear-encoded subunits of complex I in a cohort of 34 paediatric patients with isolated complex I deficiency, identifying pathogenic mutations in 6 patients. These included a novel homozygous NDUFS1 mutation in an Asian child with Leigh syndrome, a previously identified NDUFS8 mutation (c.236C>T, p.P79L) in a second Asian child with Leigh-like syndrome and six novel, compound heterozygous NDUFS2 mutations in four white Caucasian patients with Leigh or Leigh-like syndrome. Three of these children harboured an identical NDUFS2 mutation (c.875T>C, p.M292T), which was also identified in conjunction with a novel NDUFS2 splice site mutation (c.866+4A>G) in a fourth Caucasian child who presented to a different diagnostic centre, with microsatellite and single nucleotide polymorphism analyses indicating that this was due to an ancient common founder event. Our results confirm that NDUFS2 is a mutational hotspot in Caucasian children with isolated complex I deficiency and recommend the routine diagnostic investigation of this gene in patients with Leigh or Leigh-like phenotypes.
format Text
id pubmed-2947428
institution National Center for Biotechnology Information
language English
publishDate 2010
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-29474282010-10-04 The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families Tuppen, Helen A. L. Hogan, Vanessa E. He, Langping Blakely, Emma L. Worgan, Lisa Al-Dosary, Mazhor Saretzki, Gabriele Alston, Charlotte L. Morris, Andrew A. Clarke, Michael Jones, Simon Devlin, Anita M. Mansour, Sahar Chrzanowska-Lightowlers, Zofia M. A. Thorburn, David R. McFarland, Robert Taylor, Robert W. Brain Original Articles Isolated complex I deficiency is the most frequently observed oxidative phosphorylation defect in children with mitochondrial disease, leading to a diverse range of clinical presentations, including Leigh syndrome. For most patients the genetic cause of the biochemical defect remains unknown due to incomplete understanding of the complex I assembly process. Nonetheless, a plethora of pathogenic mutations have been described to date in the seven mitochondrial-encoded subunits of complex I as well as in 12 of the nuclear-encoded subunits and in six assembly factors. Whilst several mitochondrial DNA mutations are recurrent, the majority of these mutations are reported in single families. We have sequenced core structural and functional nuclear-encoded subunits of complex I in a cohort of 34 paediatric patients with isolated complex I deficiency, identifying pathogenic mutations in 6 patients. These included a novel homozygous NDUFS1 mutation in an Asian child with Leigh syndrome, a previously identified NDUFS8 mutation (c.236C>T, p.P79L) in a second Asian child with Leigh-like syndrome and six novel, compound heterozygous NDUFS2 mutations in four white Caucasian patients with Leigh or Leigh-like syndrome. Three of these children harboured an identical NDUFS2 mutation (c.875T>C, p.M292T), which was also identified in conjunction with a novel NDUFS2 splice site mutation (c.866+4A>G) in a fourth Caucasian child who presented to a different diagnostic centre, with microsatellite and single nucleotide polymorphism analyses indicating that this was due to an ancient common founder event. Our results confirm that NDUFS2 is a mutational hotspot in Caucasian children with isolated complex I deficiency and recommend the routine diagnostic investigation of this gene in patients with Leigh or Leigh-like phenotypes. Oxford University Press 2010-10 2010-09-06 /pmc/articles/PMC2947428/ /pubmed/20819849 http://dx.doi.org/10.1093/brain/awq232 Text en © The Author(s) 2010. Published by Oxford University Press on behalf of Brain. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Tuppen, Helen A. L.
Hogan, Vanessa E.
He, Langping
Blakely, Emma L.
Worgan, Lisa
Al-Dosary, Mazhor
Saretzki, Gabriele
Alston, Charlotte L.
Morris, Andrew A.
Clarke, Michael
Jones, Simon
Devlin, Anita M.
Mansour, Sahar
Chrzanowska-Lightowlers, Zofia M. A.
Thorburn, David R.
McFarland, Robert
Taylor, Robert W.
The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title_full The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title_fullStr The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title_full_unstemmed The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title_short The p.M292T NDUFS2 mutation causes complex I-deficient Leigh syndrome in multiple families
title_sort p.m292t ndufs2 mutation causes complex i-deficient leigh syndrome in multiple families
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2947428/
https://www.ncbi.nlm.nih.gov/pubmed/20819849
http://dx.doi.org/10.1093/brain/awq232
work_keys_str_mv AT tuppenhelenal thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT hoganvanessae thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT helangping thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT blakelyemmal thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT worganlisa thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT aldosarymazhor thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT saretzkigabriele thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT alstoncharlottel thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT morrisandrewa thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT clarkemichael thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT jonessimon thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT devlinanitam thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT mansoursahar thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT chrzanowskalightowlerszofiama thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT thorburndavidr thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT mcfarlandrobert thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT taylorrobertw thepm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT tuppenhelenal pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT hoganvanessae pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT helangping pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT blakelyemmal pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT worganlisa pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT aldosarymazhor pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT saretzkigabriele pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT alstoncharlottel pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT morrisandrewa pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT clarkemichael pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT jonessimon pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT devlinanitam pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT mansoursahar pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT chrzanowskalightowlerszofiama pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT thorburndavidr pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT mcfarlandrobert pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies
AT taylorrobertw pm292tndufs2mutationcausescomplexideficientleighsyndromeinmultiplefamilies