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We are analyzing https://link.springer.com/article/10.1007/s00439-003-1045-y.

Title:
A comparison of the mutation spectra of Menkes disease and Wilson disease | Human Genetics
Description:
The genes for two copper-transporting ATPases, ATP7A and ATP7B, are defective in the heritable disorders of copper imbalance, Menkes disease (MNK) and Wilson disease (WND), respectively. A comparison of the two proteins shows extensive conservation in the signature domains, with amino acid identities outside of the conserved domains being limited. The mutation spectra of MNK and WND were compared to confirm and refine further regions critical for normal function. Mutations were found to be relatively widespread; however, the majority was concentrated within defined functional domains and membrane-spanning segments, reinforcing the importance of these regions for protein function. Of the total published point mutations in ATP7A, 23.0% are splice-site, 20.7% nonsense, 17.2% missense, and 39.1% small insertions/deletions. There is a high prevalence (58.2%) of missense mutations in ATP7B. For the other mutations in ATP7B, 7.4% are splice-site, 7.4% nonsense, and 27.0% small insertions/deletions. A region of possible importance is the intervening sequence between the last copper-binding domain and the first transmembrane helix, as this region has a high percentage of MNK mutations. Similarly, the region containing the ATP-binding domain has 24.6% of all WND mutations. The study of mutation locations is useful for defining critical regions or residues and for efficient molecular diagnosis.
Website Age:
28 years and 1 months (reg. 1997-05-29).

Matching Content Categories {πŸ“š}

  • Science
  • Education
  • Health & Fitness

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Custom-built

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Traffic Estimate {πŸ“ˆ}

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🌠 Phenomenal Traffic: 5M - 10M visitors per month


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How Does Link.springer.com Make Money? {πŸ’Έ}

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Keywords {πŸ”}

google, scholar, pubmed, disease, menkes, cas, article, genet, horn, gene, hum, mutations, mutation, copper, wilson, atpa, tΓΌmer, cox, occipital, syndrome, atpb, protein, atpase, mnk, mol, med, tΓΆnnesen, research, molecular, access, trafficking, mercer, patients, patient, transport, exon, privacy, cookies, content, analysis, human, coppertransporting, defective, functional, localization, classical, ptype, nat, camakaris, ogawa,

Topics {βœ’οΈ}

p-type atpase defective sex-linked recessive disorder month download article/chapter x-linked cutis laxa c-terminal di-leucine early copper-histidine treatment copper-induced apical trafficking defective cross-link formation copper-transporting atpase defective copper-induced trafficking transmembrane helix p-type atpases copper-transporting atpases similar splice-site mutations heavy-metal transport forbes jr human menkes protein human copper transporter full article pdf privacy choices/manage cookies wilson disease mutation kaler sg cpx-type atpases pump heavy metals wilson disease gene early copper therapy copper-binding domain copper transport function structure-function analysis van luyn mj engineering research council menkes disease gene classical menkes disease copper-dependent trafficking biliary copper excretion related subjects x-inactivation center ligand-regulated transport metal binding domains partial gene deletions polarized hepatoma cells trimester prenatal diagnosis female menkes patient atp-binding domain trans-golgi network direct mutation analysis similar splicing mutations european economic area amino acid identities 1% small insertions/deletions

Questions {❓}

  • Forbes JR, Cox DW (1998) Functional characterization of missense mutations in ATP7B: Wilson disease mutation or normal variant?

Schema {πŸ—ΊοΈ}

WebPage:
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         headline:A comparison of the mutation spectra of Menkes disease and Wilson disease
         description:The genes for two copper-transporting ATPases, ATP7A and ATP7B, are defective in the heritable disorders of copper imbalance, Menkes disease (MNK) and Wilson disease (WND), respectively. A comparison of the two proteins shows extensive conservation in the signature domains, with amino acid identities outside of the conserved domains being limited. The mutation spectra of MNK and WND were compared to confirm and refine further regions critical for normal function. Mutations were found to be relatively widespread; however, the majority was concentrated within defined functional domains and membrane-spanning segments, reinforcing the importance of these regions for protein function. Of the total published point mutations in ATP7A, 23.0% are splice-site, 20.7% nonsense, 17.2% missense, and 39.1% small insertions/deletions. There is a high prevalence (58.2%) of missense mutations in ATP7B. For the other mutations in ATP7B, 7.4% are splice-site, 7.4% nonsense, and 27.0% small insertions/deletions. A region of possible importance is the intervening sequence between the last copper-binding domain and the first transmembrane helix, as this region has a high percentage of MNK mutations. Similarly, the region containing the ATP-binding domain has 24.6% of all WND mutations. The study of mutation locations is useful for defining critical regions or residues and for efficient molecular diagnosis.
         datePublished:2003-10-25T00:00:00Z
         dateModified:2003-10-25T00:00:00Z
         pageStart:165
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            Wilson Disease
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            Molecular Medicine
            Gene Function
            Metabolic Diseases
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      headline:A comparison of the mutation spectra of Menkes disease and Wilson disease
      description:The genes for two copper-transporting ATPases, ATP7A and ATP7B, are defective in the heritable disorders of copper imbalance, Menkes disease (MNK) and Wilson disease (WND), respectively. A comparison of the two proteins shows extensive conservation in the signature domains, with amino acid identities outside of the conserved domains being limited. The mutation spectra of MNK and WND were compared to confirm and refine further regions critical for normal function. Mutations were found to be relatively widespread; however, the majority was concentrated within defined functional domains and membrane-spanning segments, reinforcing the importance of these regions for protein function. Of the total published point mutations in ATP7A, 23.0% are splice-site, 20.7% nonsense, 17.2% missense, and 39.1% small insertions/deletions. There is a high prevalence (58.2%) of missense mutations in ATP7B. For the other mutations in ATP7B, 7.4% are splice-site, 7.4% nonsense, and 27.0% small insertions/deletions. A region of possible importance is the intervening sequence between the last copper-binding domain and the first transmembrane helix, as this region has a high percentage of MNK mutations. Similarly, the region containing the ATP-binding domain has 24.6% of all WND mutations. The study of mutation locations is useful for defining critical regions or residues and for efficient molecular diagnosis.
      datePublished:2003-10-25T00:00:00Z
      dateModified:2003-10-25T00:00:00Z
      pageStart:165
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         Wilson Disease
         Copper Transport
         Menkes Disease
         Patient Mutation
         Human Genetics
         Molecular Medicine
         Gene Function
         Metabolic Diseases
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