Mutations of ATP7B gene in two Thai siblings with Wilson disease

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Novel mutations in ATP7B gene of Wilson\'s disease in Iranian patients

Bacground: Wilson's disease is a rare autosomal recessive disorder characterized by toxic accumulation of copper in liver and brain. The disorder is caused by mutations in the ATP7B gene, encoding a copper transporting P-type ATPase. Characterization of the spectrum of mutations in this gene is important both for diagnosis and genetic counseling of the families. Materials and Methods: We enrol...

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multiplex arms pcr to detect 8 common mutations of atp7b gene in patients with wilson disease

results using these two sets, we identified h1069q mutation in four patients, c.2335t > g mutation in three, c.3061-1g > a splice site mutation in five, c.3305t > c mutation in one, and c.3809a > g mutation in two patients. conclusions the multiplex arms assay used in this study can be an efficient, reliable, and cost effective method as a primary screen for patients with wilson disease. patien...

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novel mutations in atp7b gene of wilson's disease in iranian patients

bacground: wilson's disease is a rare autosomal recessive disorder characterized by toxic accumulation of copper in liver and brain. the disorder is caused by mutations in the atp7b gene, encoding a copper transporting p-type atpase. characterization of the spectrum of mutations in this gene is important both for diagnosis and genetic counseling of the families.materials and methods: we en...

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Prevalence of ATP7B Gene Mutations in Iranian Patients With Wilson Disease

BACKGROUND Wilson disease (WD) is an autosomal recessive disorder. The WD gene, ATP7B, encodes a copper-transporting ATPase involved in the transport of copper into the plasma protein ceruloplasmin and in excretion of copper from the liver. ATP7B mutations cause copper to accumulate in the liver and brain. OBJECTIVES We examined the ATP7B mutation spectrum in Wilson disease patients in Iran. ...

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ژورنال

عنوان ژورنال: Asian Biomedicine

سال: 2010

ISSN: 1875-855X

DOI: 10.2478/abm-2010-0020