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September 11, 2012; 79 (11) Articles

Genetic dysfunction of MT-ATP6 causes axonal Charcot-Marie-Tooth disease

Robert D.S. Pitceathly, Sinéad M. Murphy, Ellen Cottenie, Annapurna Chalasani, Mary G. Sweeney, Cathy Woodward, Ese E. Mudanohwo, Iain Hargreaves, Simon Heales, John Land, Janice L. Holton, Henry Houlden, Julian Blake, Michael Champion, Frances Flinter, Stephanie A. Robb, Rupert Page, Michael Rose, Jacqueline Palace, Carol Crowe, Cheryl Longman, Michael P. Lunn, Shamima Rahman, Mary M. Reilly, Michael G. Hanna
First published August 29, 2012, DOI: https://doi.org/10.1212/WNL.0b013e3182698d8d
Robert D.S. Pitceathly
MRCP
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Sinéad M. Murphy
MRCP
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Ellen Cottenie
MSc
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Annapurna Chalasani
PhD
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Mary G. Sweeney
BSc
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Cathy Woodward
BSc
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Ese E. Mudanohwo
BSc
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Iain Hargreaves
PhD
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Simon Heales
PhD
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John Land
PhD
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Janice L. Holton
PhD
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Henry Houlden
PhD
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Julian Blake
MRCP
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Michael Champion
FRCPCH
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Frances Flinter
PhD
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Stephanie A. Robb
FRCPCH
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Rupert Page
FRCP
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Michael Rose
FRCP
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Jacqueline Palace
FRCP
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Carol Crowe
MD
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Cheryl Longman
FRCP
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Michael P. Lunn
FRCP
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Shamima Rahman
PhD
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Mary M. Reilly
FRCP
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Michael G. Hanna
FRCP
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Citation
Genetic dysfunction of MT-ATP6 causes axonal Charcot-Marie-Tooth disease
Robert D.S. Pitceathly, Sinéad M. Murphy, Ellen Cottenie, Annapurna Chalasani, Mary G. Sweeney, Cathy Woodward, Ese E. Mudanohwo, Iain Hargreaves, Simon Heales, John Land, Janice L. Holton, Henry Houlden, Julian Blake, Michael Champion, Frances Flinter, Stephanie A. Robb, Rupert Page, Michael Rose, Jacqueline Palace, Carol Crowe, Cheryl Longman, Michael P. Lunn, Shamima Rahman, Mary M. Reilly, Michael G. Hanna
Neurology Sep 2012, 79 (11) 1145-1154; DOI: 10.1212/WNL.0b013e3182698d8d

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Abstract

Objective: Charcot-Marie-Tooth (CMT) disease is the most common inherited neuromuscular disorder, affecting 1 in 2,500 individuals. Mitochondrial DNA (mtDNA) mutations are not generally considered within the differential diagnosis of patients with uncomplicated inherited neuropathy, despite the essential requirement of ATP for axonal function. We identified the mtDNA mutation m.9185T>C in MT-ATP6, encoding the ATP6 subunit of the mitochondrial ATP synthase (OXPHOS complex V), at homoplasmic levels in a family with mitochondrial disease in whom a severe motor axonal neuropathy was a striking feature. This led us to hypothesize that mutations in the 2 mtDNA complex V subunit encoding genes, MT-ATP6 and MT-ATP8, might be an unrecognized cause of isolated axonal CMT and distal hereditary motor neuropathy (dHMN).

Methods: A total of 442 probands with CMT type 2 (CMT2) (270) and dHMN (172) were screened for MT-ATP6/8 mutations after exclusion of mutations in known CMT2/dHMN genes. Mutation load was quantified using restriction endonuclease analysis. Blue-native gel electrophoresis (BN-PAGE) was performed to analyze the effects of m.9185T>C on complex V structure and function.

Results: Three further probands with CMT2 harbored the m.9185T>C mutation. Some relatives had been classified as having dHMN. Patients could be separated into 4 groups according to their mutant m.9185T>C levels. BN-PAGE demonstrated both impaired assembly and reduced activity of the complex V holoenzyme.

Conclusions: We have shown that m.9185T>C in MT-ATP6 causes CMT2 in 1.1% of genetically undefined cases. This has important implications for diagnosis and genetic counseling. Recognition that mutations in MT-ATP6 cause CMT2 enhances current understanding of the pathogenic basis of axonal neuropathy.

GLOSSARY

BN-PAGE=
blue-native polyacrylamide gel electrophoresis;
CMT=
Charcot-Marie-Tooth;
CMT2=
Charcot-Marie-Tooth type 2;
dHMN=
distal hereditary motor neuropathy;
LS=
Leigh syndrome;
mtDNA=
mitochondrial DNA;
NARP=
neurogenic muscle weakness, ataxia, and retinitis pigmentosa;
NCS=
nerve conduction studies;
OXPHOS=
oxidative phosphorylation;
UMN=
upper motor neuron

Footnotes

  • Supplemental data at www.neurology.org

  • Received February 16, 2012.
  • Accepted April 19, 2012.
  • Copyright © 2012 by AAN Enterprises, Inc.
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