4.7 Article

Missense Mutations in the Copper Transporter Gene ATP7A Cause X-Linked Distal Hereditary Motor Neuropathy

Journal

AMERICAN JOURNAL OF HUMAN GENETICS
Volume 86, Issue 3, Pages 343-352

Publisher

CELL PRESS
DOI: 10.1016/j.ajhg.2010.01.027

Keywords

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Funding

  1. Motor Neuron Disease Research Institute of Australia
  2. National Health and Medical Research Council of Australia
  3. Intramural Research program of the National Institute of Child Health and Human Development
  4. Methusalem project of the University of Antwerp
  5. Fund for Scientific Research (FWO-Flanders)
  6. Medical Foundation Queen Elisabeth (GSKE)
  7. Interuniversity Attraction Poles program [P6/43]
  8. Belgian Federal Science Policy Office (BELSPO)

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Distal hereditary motor neuropathies comprise a clinically and genetically heterogeneous group of disorders. We recently mapped an X-linked form of this condition to chromosome Xq13.1-q21 in two large unrelated families. The region of genetic linkage included ATP7A, which encodes a copper-transporting P-type ATPase mutated in patients with Menkes disease, a severe infantile-onset neurodegenerative condition. We identified two unique ATP7A missense mutations (p.P1386S and p.T9941) in males with distal motor neuropathy in two families. These molecular alterations impact highly conserved amino acids in the carboxyl half of ATP7A and do not directly involve the copper transporter's known critical functional domains. Studies of p.P1386S revealed normal ATP7A mRNA and protein levels, a defect in ATP7A trafficking, and partial rescue of a S. cerevisiae copper transport knockout. Although ATP7A mutations are typically associated with severe Menkes disease or its milder allelic variant, occipital horn syndrome, we demonstrate here that certain missense mutations at this locus can cause a syndrome restricted to progressive distal motor neuropathy without overt signs of systemic copper deficiency. This previously unrecognized genotype-phenotype correlation suggests an important role of the ATP7A copper transporter in motor-neuron maintenance and function.

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