Identification of novelATP7Bgene mutations and their functional roles in Korean patients with Wilson disease
doi: 10.1002/humu.20574
pmid: 17587212
Identification of novelATP7Bgene mutations and their functional roles in Korean patients with Wilson disease
Wilson disease (WND), an autosomal recessive disorder of copper transport, is characterized by excessive accumulation of intracellular copper in liver and extrahepatic tissues because of impaired biliary copper excretion and disturbed incorporation of copper into ceruloplasmin. Hepatic cirrhosis and neuronal degeneration are the major symptoms of WND, and mutations in the ATP7B gene are associated with WND. We have identified 28 different mutations in the ATP7B gene, including six novel variations, in 120 unrelated Korean patients with WND. Molecular defects in ATP7B were present in only 75.0% of Korean WND patients, with the most common mutation, p.Arg778Leu, having an allele frequency of 39.2%. To evaluate the functional defects of ATP7B caused by novel mutations, we used a yeast complementation system, and we used confocal microscopy to localize each mutation after transient expression in mammalian cells. Six novel variations were cloned into a yeast expression vector and two into a mammalian expression vector for confocal analysis. We found that c.2785A>G (p.Ile929Val) and c.3316G>A (p.Val1106Ile) were rare polymorphisms, whereas the others were novel variations disturbing ATP7B function.
- Chonnam National University Korea (Republic of)
- Asan Medical Center Korea (Republic of)
- University of Ulsan Korea (Republic of)
- Korea University Korea (Republic of)
- Asan Foundation Korea (Republic of)
Adenosine Triphosphatases, Adult, DNA, Complementary, Korea, Adolescent, Middle Aged, Gene Frequency, Hepatolenticular Degeneration, Copper-Transporting ATPases, Child, Preschool, COS Cells, Chlorocebus aethiops, Mutation, Animals, Humans, Child, Cation Transport Proteins, Alleles
Adenosine Triphosphatases, Adult, DNA, Complementary, Korea, Adolescent, Middle Aged, Gene Frequency, Hepatolenticular Degeneration, Copper-Transporting ATPases, Child, Preschool, COS Cells, Chlorocebus aethiops, Mutation, Animals, Humans, Child, Cation Transport Proteins, Alleles
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