A novel IBA57 variant is associated with mitochondrial iron-sulfur protein deficiency and necrotizing myelopathy in dogs.

Front Genet

Expertise Centre of Genetics, Department of Clinical Sciences, Faculty of Veterinary Medicine, Utrecht University, Utrecht, Netherlands.

Published: July 2023

AI Article Synopsis

  • Hereditary necrotizing myelopathy (HNM) in Kooiker dogs is a genetic condition that leads to ataxia and paralysis, inherited in an autosomal recessive manner, with the underlying genetic defect not yet known.
  • The research involved mapping the genetic locus of HNM using genome-wide analysis on affected and unaffected dogs, ultimately identifying a candidate mutation in the IBA57 gene on canine chromosome 14.
  • Functional studies demonstrated that the identified mutation (R147W) impairs the gene's capability to support mitochondrial function, which is linked to a similar human condition called multiple mitochondrial dysfunction syndrome 3 (MMDS3).

Article Abstract

Hereditary necrotizing myelopathy (HNM) in young Kooiker dogs is characterized by progressive ataxia and paralysis with autosomal recessive inheritance. The basic genetic defect is unknown. We investigated the possible cause by a genome-wide analysis using six affected and 17 unrelated unaffected Kooiker dogs and by functional follow-up studies. The HNM locus was mapped by a case-control study using a dense SNP array and confirmed by linkage analysis of two pedigrees. The gene exons in the critical region were analyzed by next-generation sequencing. The functional effect of the candidate canine pathogenic variant was biochemically examined in an established HeLa cell culture model in which the endogenous gene product was depleted by RNAi. The basic defect was localized in the centromeric 5 Mb region of canine chromosome 14. The most associated SNP co-segregated fully with HNM and reached an LOD score of 6.1. A candidate pathogenic mutation was found in the iron-sulfur cluster assembly gene and led to the amino acid substitution R147W. The expression of human IBA57 harboring the canine R147W exchange could only partially restore the biochemical defects of several mitochondrial [4Fe-4S] proteins upon IBA57 depletion, showing that the mutant protein is functionally impaired. Pathogenic variants in human cause multiple mitochondrial dysfunction syndrome 3 (MMDS3), a neurodegenerative disorder with distant similarities to HNM. The incomplete functional complementation of IBA57-depleted human cells by IBA57-R147W identifies the DNA mutation in affected Kooiker dogs as the genetic cause of HNM. Our findings further expand the phenotypic spectrum of pathogenic variants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10425596PMC
http://dx.doi.org/10.3389/fgene.2023.1190222DOI Listing

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