4.5 Article

COLQ variant associated with Devon Rex and Sphynx feline hereditary myopathy

期刊

ANIMAL GENETICS
卷 46, 期 6, 页码 711-715

出版社

WILEY-BLACKWELL
DOI: 10.1111/age.12350

关键词

collagen-like tail subunit of asymmetric acetylcholinesterase; congenital myasthenic syndrome; domestic cat; Felis catus silvestris

资金

  1. National Center for Research Resources [R24 RR016094]
  2. Office of Research Infrastructure Programs/OD [R24OD010928]
  3. University of Missouri-Columbia Gilbreath-McLorn Endowment
  4. Winn Feline Foundation [W10-014, W11-041, MT13-010]
  5. Phyllis and George Miller Trust [MT08-015]
  6. University of California-Davis, Center for Companion Animal Health [2008-36-F, 2008-06-F]
  7. Cat Health Network [D12FE-510]
  8. Valentine Charlton Bequest

向作者/读者索取更多资源

Some Devon Rex and Sphynx cats have a variably progressive myopathy characterized by appendicular and axial muscle weakness, megaesophagus, pharyngeal weakness and fatigability with exercise. Muscle biopsies from affected cats demonstrated variable pathological changes ranging from dystrophic features to minimal abnormalities. Affected cats have exacerbation of weakness following anticholinesterase dosing, a clue that there is an underlying congenital myasthenic syndrome (CMS). A genome-wide association study and whole-genome sequencing suggested a causal variant for this entity was a c.1190G>A variant causing a cysteine to tyrosine substitution (p.Cys397Tyr) within the C-terminal domain of collagen-like tail subunit (single strand of homotrimer) of asymmetric acetylcholinesterase (COLQ). Alpha-dystroglycan expression, which is associated with COLQ anchorage at the motor end-plate, has been shown to be deficient in affected cats. Eighteen affected cats were identified by genotyping, including cats from the original clinical descriptions in 1993 and subsequent publications. Eight Devon Rex and one Sphynx not associated with the study were identified as carriers, suggesting an allele frequency of similar to 2.0% in Devon Rex. Over 350 tested cats from other breeds did not have the variant. Characteristic clinical features and variant presence in all affected cats suggest a model for COLQ CMS. The association between the COLQ variant and this CMS affords clinicians the opportunity to confirm diagnosis via genetic testing and permits owners and breeders to identify carriers in the population. Moreover, accurate diagnosis increases available therapeutic options for affected cats based on an understanding of the pathophysiology and experience from human CMS associated with COLQ variants.

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