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Twenty-five novel mutations including duplications in the ATP7A gene.

Authors :
Moizard MP
Ronce N
Blesson S
Bieth E
Burglen L
Mignot C
Mortemousque I
Marmin N
Dessay B
Danesino C
Feillet F
Castelnau P
Toutain A
Moraine C
Raynaud M
Source :
Clinical genetics [Clin Genet] 2011 Mar; Vol. 79 (3), pp. 243-53.
Publication Year :
2011

Abstract

Twenty-five novel mutations including duplications in the ATP7A gene. Menkes disease (MD) and occipital horn syndrome (OHS) are allelic X-linked recessive copper deficiency disorders resulting from ATP7A gene mutations. MD is a severe condition leading to progressive neurological degeneration and death in early childhood, whereas OHS has a milder phenotype with mainly connective tissue abnormalities. Until now, molecular analyses have revealed only deletions and point mutations in both diseases. This study reports new molecular data in a series of 40 patients referred for either MD or OHS. We describe 23 point mutations (9 missense mutations, 7 splice site variants, 4 nonsense mutations, and 3 small insertions or deletions) and 7 intragenic deletions. Of these, 18 point mutations and 3 deletions are novel. Furthermore, our finding of four whole exon duplications enlarges the mutation spectrum in the ATP7A gene. ATP7A alterations were found in 85% of cases. Of these alterations, two thirds were point mutations and the remaining one third consisted of large rearrangements. We found that 66.6% of point mutations resulted in impaired ATP7A transcript splicing, a phenomenon more frequent than expected. This finding enabled us to confirm the pathogenic role of ATP7A mutations, particularly in missense and splice site variants.<br /> (© 2010 John Wiley & Sons A/S.)

Details

Language :
English
ISSN :
1399-0004
Volume :
79
Issue :
3
Database :
MEDLINE
Journal :
Clinical genetics
Publication Type :
Academic Journal
Accession number :
21208200
Full Text :
https://doi.org/10.1111/j.1399-0004.2010.01461.x