Related Experiment Video
Updated: Aug 10, 2026

A Phenotyping Regimen for Genetically Modified Mice Used to Study Genes Implicated in Human Diseases of Aging
Published on: July 14, 2016
Intragenic deletions at Atp7a in mouse models for Menkes disease
1University Department of Medical Genetics, St. Mary's Hospital, Hathersage Road, Manchester, M13 OJH, United Kingdom
Abstract:
Mottled mice have mutations in the copper-transporting ATPase Atp7a. They are proven models for the human disorder Menkes disease (MD), which results from mutations in a homologous gene. Mottled mice can be divided into three classes: class 1, in which affected males die before birth; class 2, in which affected males die in the early postnatal period; and class 3, in which affected males survive to adulthood. In humans, it has been shown that mutations that lead to a complete absence of functional protein cause classical MD, which is characterized by death of boys in early childhood. We hypothesized that the most severely affected mottled alleles would be the most likely to carry mutations equivalent to those causing classical MD and therefore undertook mutational analysis of several class 1 mottled alleles to assess whether these were appropriate models for the disease at the molecular level. Two novel mutations, a deletion of exons 11-14 in mottled spot and an insertion in exon 10 leading to missplicing in mottled candy, were identified. However, these are both "in-frame" mutations, as are the other eight Atp7a mutations reported to date, and therefore no frameshift or nonsense mutations have yet been associated with the mottled phenotype. This contrasts with the mutation spectrum associated with MD, emphasizing the need for caution when mottled mice are used as models for the clinical disorder.
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.

