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June 6, 2006Circulation132 citations

Single-Gene Mutations and Increased Left Ventricular Wall Thickness in the Community

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HMHiroyuki MoritaMLMartin G. LarsonSBScott Barr

Key Result

Among community participants with unexplained increased left ventricular wall thickness (>13 mm), 18% had mutations in sarcomere protein or lipid storage genes.

Key Points

  • This research aims to explore the role of single-gene mutations in increasing left ventricular wall thickness (LVWT) within the community.
  • Analyzed 1862 participants from the Framingham Heart Study without severe cardiovascular conditions.
  • Sequenced 8 sarcomere protein genes, 3 storage cardiomyopathy genes, and 27 mitochondrial genes.
  • Identified individuals with maximum LVWT greater than 13 mm and assessed genetic mutations.
  • Approximately 3% of participants had increased LVWT, with 18% showing mutations in relevant genes.
  • Detected 8 mutations in 9 individuals; primarily in sarcomere protein genes such as MYH7 and MYBPC3.
  • Participants with gene mutations were clinically indistinguishable from those without.

Study Design

Type

Cohort (n=1,862)

Structured PICO

What is the prevalence of single-gene mutations causing familial cardiomyopathies in community-dwelling individuals with unexplained increased left ventricular wall thickness?

P
Population
1862 unrelated participants from the community-based Framingham Heart Study (52% women; age, 59+/-9 years) who had echocardiograms and provided DNA samples, excluding severe hypertension, aortic prosthesis, or significant aortic stenosis. 50 participants had unexplained increased LVWT (>13 mm).
I
Intervention
Genetic sequencing of 8 sarcomere protein genes, 3 storage cardiomyopathy-causing genes, and 27 mitochondrial genes.
O
Outcome
Prevalence of single-gene mutations (sarcomere protein, storage cardiomyopathy, mitochondrial genes) in individuals with unexplained increased left ventricular wall thickness.

In a community-based cohort, nearly 1 in 5 individuals with unexplained increased left ventricular wall thickness harbored a single-gene mutation associated with cardiomyopathy.

Abstract

BACKGROUND: Mutations in sarcomere protein, PRKAG2, LAMP2, alpha-galactosidase A (GLA), and several mitochondrial genes can cause rare familial cardiomyopathies, but their contribution to increased left ventricular wall thickness (LVWT) in the community is unknown. METHODS AND RESULTS: We studied 1862 unrelated participants (52% women; age, 59+/-9 years) from the community-based Framingham Heart Study who had echocardiograms and provided DNA samples but did not have severe hypertension, aortic prosthesis, or significant aortic stenosis. Eight sarcomere protein genes, 3 storage cardiomyopathy-causing genes, and 27 mitochondrial genes were sequenced in unrelated individuals with increased LVWT (maximum LVWT >13 mm). Fifty eligible participants (9 women) had unexplained increased LVWT. We detected 8 mutations in 9 individuals (2 women); 7 mutations in 5 sarcomere protein genes (MYH7, MYBPC3, TNNT2, TNNI3, MYL3), and 1 GLA mutation. In individuals with increased LVWT, participants with sarcomere protein and storage mutations were clinically indistinguishable from those without mutations. CONCLUSIONS: In a community-based cohort, about 3% of eligible participants had increased LVWT, of whom 18% had sarcomere protein or lipid storage gene mutations. Increased LVWT in the community is a very heterogeneous condition, which sometimes may arise from single-gene variants in one of a number of genes.

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Cite This Study

Morita et al. (2006) conducted a cohort in Increased left ventricular wall thickness (n=1,862). Genetic sequencing was evaluated on Prevalence of single-gene mutations in individuals with unexplained increased left ventricular wall thickness (>13 mm). Among community participants with unexplained increased left ventricular wall thickness (>13 mm), 18% had mutations in sarcomere protein or lipid storage genes.

synapsesocial.com/papers/6a141bd93f92ec2dd759aca1https://doi.org/10.1161/circulationaha.105.593558
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