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Published on: August 8, 2022
Novel Cardiac Troponin-I Missense Variant (c.593C>T) Is Associated With Familial Hypertrophic Cardiomyopathy in
Victor N Rivas1, Dayna A Goldsmith2, Michael W Vandewege1
1Department of Clinical Sciences (V.N.R., M.W.V., R.H.L.L., S.M.L., M.L., J.A.S.), North Carolina State University, College of Veterinary Medicine, Raleigh.
Insights
A new genetic variant in the TNNI3 gene has been identified as the cause of Hypertrophic Cardiomyopathy (HCM) in Golden Retrievers. This discovery enables genetic screening and prevention strategies for this canine heart disease.
Area of Science:
- Genetics and Genomics
- Cardiovascular Medicine
- Veterinary Pathology
Background:
- Hypertrophic cardiomyopathy (HCM) is a cardiac disorder causing left ventricular thickening, affecting humans and various animal species.
- While numerous HCM-associated mutations are known in humans, only a few have been identified in cats, and none previously in dogs.
- Sudden cardiac death in young Golden Retrievers prompted an investigation into a potential genetic cause of HCM within the breed.
Purpose of the Study:
- To identify the genetic basis of Hypertrophic Cardiomyopathy (HCM) in a family of Golden Retrievers.
- To investigate the segregation of genetic variants within the affected family and an extended canine cohort.
- To explore the molecular pathogenesis of the identified variant at the sarcomeric level.
Main Methods:
- Whole-genome sequencing was performed on affected puppies and their family members.
- Candidate variant genotyping was conducted in large cohorts of unphenotyped and phenotyped dogs.
- Left ventricular tissue immunofluorescence staining was used to assess protein localization and expression.
Main Results:
- A single autosomal-recessive missense variant (c.593C>T) in the TNNI3 (Cardiac Troponin-I) gene was identified and segregated with HCM in the Golden Retriever family.
- This TNNI3 variant was absent in over 2700 unphenotyped dogs and 45 unrelated phenotyped Golden Retrievers.
- Immunofluorescence studies did not show aberrant TNNI3 protein localization in the sarcomeres of affected dogs.
Conclusions:
- The identified TNNI3 variant is the first reported HCM-associated mutation in any canine species.
- This finding provides a basis for developing genetic screening tests for HCM in Golden Retrievers.
- The discovery facilitates the creation of translational models for HCM research and aids in early disease prevention.
Background:
Hypertrophic cardiomyopathy (HCM) is a naturally occurring cardiac disorder afflicting humans, cats, rhesus macaques, pigs, and rarely dogs. The disease is characterized by maladaptive left ventricular wall thickening. Over 1500 sarcomere-coding mutations explain HCM in humans, whereas only 3 have been reported in cat breeds. To date, no mutations have been described in dogs. HCM in a nuclear family of Golden Retrievers was identified following the sudden cardiac death of 3 related puppies <2 years of age from 2 dam-offspring repeat matings.
Methods:
Whole-genome sequencing on the 3 affected puppies, along with nuclear family members (ie, sire, dam, 4 unaffected littermates, 4 unaffected half-siblings), and 1 distantly related, geriatric, cardiovascularly normal Golden Retriever was performed (n=14). Candidate variant genotyping was performed in an unphenotyped cohort of dogs (n=2771) and an expanded population of phenotyped, unrelated Golden Retrievers (n=45). Left ventricular tissue immunofluorescence staining was subsequently performed to investigate incorporation and expression of mutant protein within the cardiac sarcomere of HCM-affected cases.
Results:
Gross and histopathologic evaluations of the HCM-affected puppies revealed hallmark features of the disease, including cardiomyocyte hypertrophy, interstitial fibrosis, and left-sided congestive heart failure. Segregation analysis of called variants, performed under assumptions of an autosomal-recessive mode of inheritance, identified a single segregating c.593C>T missense variant in TNNI3 (Cardiac Troponin-I). This variant was not observed in the unphenotyped (n=2771) nor in the phenotyped, unrelated cohort of dogs (n=45). Immunofluorescence staining of left ventricular tissues did not reveal obvious aberrant protein localization and expression at the sarcomeric level, suggesting the molecular pathogenesis of the TNNI3 variant is not related to abnormal protein incorporation within the sarcomere.
Conclusions:
This variant represents the first-ever reported HCM-associated variant in any canine species, and its identification holds promise for establishing translational models, genetic screening, and early disease prevention within the breed.
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