Founder mutation in N terminus of cardiac troponin i causes malignant hypertrophic cardiomyopathy

Akl C. Fahed, Georges Nemer, Fadi F. Bitar, Samir Arnaout, Antoine B. Abchee, Manal Batrawi, Athar Khalil, Ossama K.Abou Hassan, Steven R. DePalma, Barbara McDonough, Mariam T. Arabi, James S. Ware, Jonathan G. Seidman*, Christine E. Seidman*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

11 Citations (Scopus)

Abstract

BACKGROUND: Cardiac troponin I (TNNI3) gene mutations account for 3% of hypertrophic cardiomyopathy and carriers have a heterogeneous phenotype, with increased risk of sudden cardiac death (SCD). Only one mutation (p.Arg21Cys) has been reported in the N terminus of the protein. In model organisms, it impairs PKA (protein kinase A) phosphorylation, increases calcium sensitivity, and causes diastolic dysfunction. The phenotype of this unique mutation in patients with hypertrophic cardiomyopathy remains unknown. METHODS: We sequenced 29 families with hypertrophic cardiomyopathy enriched for pediatric-onset disease and identified 5 families with the TNNI3 p.Arg21Cys mutation. Using cascade screening, we studied the clinical phenotype of 57 individuals from the 5 families with TNNI3 p.Arg21Cys-related cardiomyopathy. We performed survival analysis investigating the age at first SCD in carriers of the mutation. RESULTS: All 5 families with TNNI3 p.Arg21Cys were from South Lebanon. TNNI3 p.Arg21Cys-related cardiomyopathy manifested a malignant phenotype-SCD occurred in 30 (53%) of 57 affected individuals at a median age of 22.5 years. In select carriers without left ventricular hypertrophy on echocardiogram, SCD occurred, myocyte disarray was found on autopsy heart, and tissue Doppler and cardiac magnetic resonance imaging identified subclinical disease features such as diastolic dysfunction and late gadolinium enhancement. CONCLUSIONS: The TNNI3 p.Arg21Cys mutation has a founder effect in South Lebanon and causes malignant hypertrophic cardiomyopathy with early SCD even in the absence of hypertrophy. Genetic diagnosis with this mutation may be sufficient for risk stratification for SCD.

Original languageEnglish
Pages (from-to)444-452
Number of pages9
JournalCirculation. Genomic and precision medicine
DOIs
Publication statusAccepted/In press - 2020
Externally publishedYes

Keywords

  • Cardiomyopathy
  • Death
  • Disease
  • Hypertrophic
  • Mutation
  • Risk
  • Sudden, cardiac

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