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Published on: May 24, 2016
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.
Abstract:
Mitochondrial DNA depletion syndromes (MDS) are often serious autosomal recessively inherited disorders characterized by tissue-specific mtDNA copy number reduction. Many genes, including MPV17, are associated with the hepatocerebral form of MDS. MPV17 encodes for a mitochondrial inner membrane protein with a poorly characterized function. Several MPV17 mutations have been reported in association with a heterogeneous group of early-onset manifestations, including liver disease and neurological problems. Mpv17-deficient mice present renal and hearing defects. We describe here a MPV17 truncation mutation in dogs. We found a 1-bp insertion in exon 4 of the MPV17 gene, resulting in a frameshift and early truncation of the encoded protein. The mutation halves MPV17 expression in the lymphocytes of the homozygous dogs and the truncated protein is not translated in transfected cells. The insertion mutation is recurrent and exists in many unrelated breeds, although is highly enriched in the Boxer breed. Unexpectedly, despite the truncation of MPV17, we could not find any common phenotypes in the genetically affected dogs. The lack of observable phenotype could be due to a late onset, mild symptoms or potential tissue-specific compensatory mechanisms. This study suggests species-specific differences in the manifestation of the MPV17 defects and establishes a novel large animal model to further study MPV17 function and role in mitochondrial biology.
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.
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