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Novel troponin T mutation in familial dilated cardiomyopathy with gender-dependant severity
Christopher B Stefanelli1, Amnon Rosenthal, Andrei B Borisov
1Department of Pediatrics and Communicable Diseases, Division of Pediatric Cardiology, University of Michigan, Ann Arbor, MI 48109, USA.
Insights
A novel cardiac troponin T mutation (A171S) causes dilated cardiomyopathy (DCM) and sudden cardiac death, with males experiencing more severe symptoms. This finding advances understanding of DCM pathophysiology.
Area of Science:
- Cardiovascular Medicine
- Molecular Cardiology
- Genetics
Background:
- Sarcomeric protein mutations cause hypertrophic or dilated cardiomyopathy.
- Cardiac troponin T mutations can lead to cardiac hypertrophy or dilated cardiomyopathy and heart failure.
Purpose of the Study:
- Identify a novel cardiac troponin T mutation (A171S) associated with dilated cardiomyopathy (DCM) and sudden cardiac death.
- Investigate the gender-specific differences in phenotype severity for the A171S mutation.
Main Methods:
- Identification and characterization of a novel cardiac troponin T mutation (A171S).
- Clinical assessment of patient phenotypes, including left ventricular dimensions and function.
- Analysis of the mutation's effect on protein structure and interactions.
Main Results:
- The A171S mutation leads to dilated cardiomyopathy and sudden cardiac death.
- Adult males exhibit more severe ventricular dilatation and dysfunction compared to females.
- The mutation involves substitution of a hydrophilic for a hydrophobic amino acid in a conserved domain.
Conclusions:
- The A171S mutation provides new insights into DCM pathophysiology.
- Understanding this mutation may elucidate functional differences between hypertrophic cardiomyopathy (HCM) and DCM-causing mutations in cardiac troponin T.
- Further research on A171S functional consequences is warranted.
Abstract:
Mutations in sarcomeric proteins can lead to either hypertrophic or dilated cardiomyopathy depending on their effects on the structural and functional properties of the contractile unit of the heart. Mutations in cardiac troponin T, which binds the calcium-responsive troponin complex to alpha-tropomyosin, have been shown to result in cardiac hypertrophy or cardiac dilatation and heart failure, depending on the nature of the specific mutation. In this study, we report the identification of a novel cardiac troponin T mutation (A171S) leading to dilated cardiomyopathy and sudden cardiac death. In contrast to prior described mutations, the A171S mutation results in a significant gender difference in the severity of the observed phenotype with adult males (over 20 years of age) demonstrating more severe ventricular dilatation [left ventricular end diastolic dimension (LVEDD) 7.1 vs. 5.1cm; P=0.01, t test] and left ventricular dysfunction [left ventricular shortening fraction (LVSF) 21 vs. 34%; P=0.04, t test] than adult females. The described mutation substitutes a hydrophilic amino acid for a hydrophobic one in a highly conserved domain involved in the interaction between troponin T and alpha-tropomyosin. Interestingly, four previously described mutations within 12 amino acids of A171 lead to a hypertrophic phenotype, suggesting that further characterization of the functional consequences of the A171S mutation may lead to a better understanding of the pathophysiology of DCM and of the functional differences between HCM- and DCM-causing mutations in cardiac troponin T.
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