Canine MPV17 truncation without clinical manifestations

Reetta L Hänninen1, Saija Ahonen1, Merce Màrquez2

  • 1Department of Veterinary Biosciences and Research Programs Unit, Molecular Neurology, University of Helsinki and Folkhälsan Research Center, Helsinki 00014, Finland.

Biology Open
|September 11, 2015
PubMed

Insights

A new MPV17 gene mutation causing mitochondrial DNA depletion syndromes was found in dogs. Unexpectedly, affected dogs showed no common symptoms, suggesting species-specific differences and a new large animal model for research.

Area of Science:

  • Genetics and Molecular Biology
  • Mitochondrial Biology
  • Animal Models

Background:

  • Mitochondrial DNA depletion syndromes (MDS) are inherited disorders affecting mtDNA copy number.
  • MPV17 gene mutations are linked to hepatocerebral MDS, but its function is unclear.
  • MPV17 deficiency in mice causes renal and hearing issues.

Purpose of the Study:

  • To identify and characterize MPV17 mutations in dogs.
  • To investigate the phenotypic consequences of MPV17 mutations in a canine model.
  • To establish a large animal model for studying MPV17 function in mitochondrial biology.

Main Methods:

  • Genetic sequencing to identify MPV17 mutations in dogs.
  • Analysis of MPV17 gene expression in affected dogs.
  • In vitro studies using transfected cells to assess protein translation.

Main Results:

  • A recurrent 1-bp insertion in the MPV17 gene causing frameshift and truncation was identified in dogs, particularly Boxers.
  • Homozygous dogs showed reduced MPV17 expression, and the truncated protein was not translated.
  • No common phenotypes were observed in genetically affected dogs, despite the mutation.

Conclusions:

  • Canine MPV17 mutations lead to protein truncation but do not manifest common phenotypes.
  • Species-specific differences exist in MPV17 defect manifestation.
  • This study establishes a novel canine model for investigating MPV17 function and MDS.
Keywords:
DogMPV17mtDNA

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