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NA01981 DNA from Fibroblast

Description:

MENKES SYNDROME
ATPASE, CU(2+)-TRANSPORTING, ALPHA POLYPEPTIDE; ATP7A

Affected:

Yes

Sex:

Male

Age:

2 YR (At Sampling)

  • Overview
  • Characterizations
  • Phenotypic Data
  • Publications
  • External Links
  • Images

Overview

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Repository NIGMS Human Genetic Cell Repository
Subcollection Heritable Diseases
Class Disorders of Metal Metabolism
Quantity 10 µg
Quantitation Method Please see our FAQ
Cell Type Fibroblast
Transformant Untransformed
Sample Source DNA from Fibroblast
Race White
Family Member 1
Relation to Proband proband
Confirmation Molecular characterization after cell line submission to CCR
Species Homo sapiens
Common Name Human
Remarks See GM01982 Lymph; fibroblasts exhibit elevated copper concentrations; abnormal metallothionein gene regulation in response to copper; SV40 transformed culture shows qualitative and quantitative changes in Mc1 mRNA; donor subject has a 5 bp deletion at nucleotide 803 in exon 4 of the ATP7A gene (803_807delATCTC) causing a frameshift after Leu219

Characterizations

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Passage Frozen 6
 
MNK GENE; MENKES SYNDROME Das et al (Am J Hum Genet 55:883-889,1994) reported that fibroblasts from this Menkes syndrome patient showed a five bp deletion, ATCTT, from nucleotide 803-807 in the MNK gene. The mutation results in a frameshift after Leu-219 and decreased level of mRNA detected by northern blot analysis.
 
IDENTIFICATION OF SPECIES OF ORIGIN Species of Origin confirmed by LINE assay
 
Gene ATP7A
Chromosomal Location Xq21.1
Allelic Variant 1 fs Leu219; MENKES DISEASE
Identified Mutation 803_807delATCTC

Phenotypic Data

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Remarks See GM01982 Lymph; fibroblasts exhibit elevated copper concentrations; abnormal metallothionein gene regulation in response to copper; SV40 transformed culture shows qualitative and quantitative changes in Mc1 mRNA; donor subject has a 5 bp deletion at nucleotide 803 in exon 4 of the ATP7A gene (803_807delATCTC) causing a frameshift after Leu219

Publications

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Dagenais SL, Adam AN, Innis JW, Glover TW, A novel frameshift mutation in exon 23 of ATP7A (MNK) results in occipital horn syndrome and not in Menkes disease. Am J Hum Genet69(2):420-7 2001
PubMed ID: 11431706
 
Yamaguchi Y, Heiny ME, Suzuki M, Gitlin JD, Biochemical characterization and intracellular localization of the Menkes disease protein. Proc Natl Acad Sci U S A93:14030-5 1996
PubMed ID: 8943055
 
Das S, Levinson B, Whitney S, Vulpe C, Packman S, Gitschier J, Diverse mutations in patients with Menkes disease often lead to exon skipping. Am J Hum Genet55:883-889 1994
PubMed ID: 7977350
 
Vulpe C, Levinson B, Whitney S, Packman S, Gitschier J, Isolation of a candidate gene for Menkes disease and evidence that it encodes a copper-transporting ATPase [published erratum appears in Nat Genet 1993 Mar;3(3):273] [see comments] Nat Genet3:7-13 1993
PubMed ID: 8490659
 
Leone A, Pavlakis GN, Hamer DH, Menkes' disease: abnormal metallothionein gene regulation in response to copper. Cell40:301-9 1985
PubMed ID: 3967294
 
LaBadie GU, Beratis NG, Price PM, Hirschhorn K, Studies of the copper-binding proteins in Menkes and normal cultured skin fibroblast lysates. J Cell Physiol106:173-8 1981
PubMed ID: 6783668
 
Beratis NG, Price P, Labadie G, Hirschhorn K, 64Cu metabolism in Menkes and normal cultured skin fibroblasts. Pediatr Res12:699-702 1978
PubMed ID: 673539

External Links

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dbSNP dbSNP ID: 13501
Gene Cards ATP7A
Gene Ontology GO:0000287 magnesium ion binding
GO:0004008 copper-exporting ATPase activity
GO:0005507 copper ion binding
GO:0005524 ATP binding
GO:0005794 Golgi apparatus
GO:0005887 integral to plasma membrane
GO:0006825 copper ion transport
GO:0008152 metabolism
GO:0015097 mercury ion transporter activity
GO:0015694 mercury ion transport
GO:0016787 hydrolase activity
GO:0016820 hydrolase activity, acting on acid anhydrides, catalyzing transmembrane movement of substances
GO:0030001 metal ion transport
GO:0046873 metal ion transporter activity
NCBI Gene Gene ID:538
NCBI GTR 300011 ATPase, Cu(2+)-TRANSPORTING, ALPHA POLYPEPTIDE; ATP7A
309400 MENKES DISEASE; MNK
OMIM 300011 ATPase, Cu(2+)-TRANSPORTING, ALPHA POLYPEPTIDE; ATP7A
309400 MENKES DISEASE; MNK
Omim Description COPPER TRANSPORT DISEASE
  KINKY HAIR DISEASE
  MENKES SYNDROME
  MK; MNK
  STEELY HAIR DISEASE

Images

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View pedigree 
Pricing
International/Commercial/For-profit:
$281.00USD
U.S. Academic/Non-profit/Government:
$139.00USD
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