Intragenic deletions at Atp7a in mouse models for Menkes disease

P Cunliffe1, V Reed, Y Boyd

  • 1University Department of Medical Genetics, St. Mary's Hospital, Hathersage Road, Manchester, M13 OJH, United Kingdom

Genomics
|June 2, 2001
PubMed

Insights

Mottled mice, models for Menkes disease (MD), have mutations in the copper-transporting ATPase Atp7a gene. Analysis revealed novel "in-frame" mutations, differing from the frameshift/nonsense mutations typical of human MD, suggesting caution in using these mice as disease models.

Area of Science:

  • Genetics
  • Molecular Biology
  • Animal Models

Background:

  • Mottled mice harbor mutations in the copper-transporting ATPase Atp7a gene.
  • These mice serve as models for human Menkes disease (MD), caused by mutations in a homologous gene.
  • Mottled mice exhibit varying severity, classified into three groups based on survival rates.

Purpose of the Study:

  • To investigate whether severe mottled mouse alleles represent appropriate molecular models for classical Menkes disease.
  • To perform mutational analysis on Class 1 mottled alleles, which exhibit the most severe phenotype.

Main Methods:

  • Mutational analysis of Class 1 mottled mouse alleles.
  • Identification and characterization of mutations within the Atp7a gene.

Main Results:

  • Two novel mutations were identified: an exon deletion (11-14) in mottled spot and an exon insertion (10) causing missplicing in mottled candy.
  • Both identified mutations, along with previously reported Atp7a mutations in mottled mice, are "in-frame".
  • No frameshift or nonsense mutations have been associated with the mottled phenotype to date.

Conclusions:

  • The mutation spectrum in severe mottled mouse alleles differs from that observed in classical human Menkes disease.
  • This disparity necessitates caution when utilizing mottled mice as precise models for the molecular pathology of Menkes disease.