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Published on: August 8, 2022
Sarcomeric hypertrophic cardiomyopathy: genetic profile in a Portuguese population
Dulce Brito1, Gabriel Miltenberger-Miltenyi, Sónia Vale Pereira
1Centro de Cardiologia da Universidade de Lisboa, Lisboa, Portugal. dulcebrito@spc.pt
Insights
Genetic testing identified mutations in sarcomeric genes in over half of hypertrophic cardiomyopathy patients, primarily in MYBPC3 and MYH7. This genetic diagnosis aids risk stratification and family screening for hypertrophic cardiomyopathy.
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
Background:
- Hypertrophic cardiomyopathy (HCM) presents with varied symptoms, including sudden cardiac death.
- Genetic diagnosis is crucial for identifying at-risk individuals within families.
- The spectrum of disease-causing mutations in the Portuguese population was previously unknown.
Purpose of the Study:
- To investigate the spectrum of sarcomeric gene mutations in Portuguese patients with hypertrophic cardiomyopathy.
- To determine the frequency and types of mutations in key sarcomeric genes.
Main Methods:
- Systematic screening of 77 unrelated hypertrophic cardiomyopathy probands.
- PCR and sequencing of five sarcomeric genes: MYBPC3, MYH7, TNNT2, TNNI3, and MYL2.
- Familial cosegregation analysis was performed.
Main Results:
- Thirty-four distinct mutations were found in 41 (53%) index patients.
- MYBPC3 was the most frequently implicated gene (66%), followed by MYH7 (22%).
- Multiple mutations were identified in 7% of patients, and 276 relatives were screened, revealing additional affected individuals.
Conclusions:
- Disease-associated mutations are prevalent, particularly in familial hypertrophic cardiomyopathy.
- MYBPC3 and MYH7 mutations are the primary cause of sarcomere-related disease.
- Genetic screening improves diagnostic accuracy, risk stratification, and genetic counseling for hypertrophic cardiomyopathy.
Background:
Sarcomeric hypertrophic cardiomyopathy has heterogeneous phenotypic expressions, of which sudden cardiac death is the most feared. A genetic diagnosis is essential to identify subjects at risk in each family. The spectrum of disease-causing mutations in the Portuguese population is unknown.
Methods:
Seventy-seven unrelated probands with hypertrophic cardiomyopathy were systematically screened for mutations by PCR and sequencing of five sarcomeric genes: MYBPC3, MYH7, TNNT2, TNNI3 and MYL2. Familial cosegregation analysis was performed in most patients.
Results:
Thirty-four different mutations were identified in 41 (53%) index patients, 71% with familial hypertrophic cardiomyopathy. The most frequently involved gene was MYBPC3 (66%) with 22 different mutations (8 novel) in 27 patients, followed by MYH7 (22%), TNNT2 (12%) and TNNI3 (2.6%). In three patients (7%), two mutations were found in MYBPC3 and/or MYH7. Additionally, 276 relatives were screened, leading to the identification of a mean of three other affected relatives for each pedigree with the familial form of the disease.
Conclusions:
Disease-associated mutations were identified mostly in familial hypertrophic cardiomyopathy, corroborating the idea that rarely studied genes may be implicated in sporadic forms. Private mutations are the rule, MYBPC3 being the most commonly involved gene. Mutations in MYBPC3 and MYH7 accounted for most cases of sarcomere-related disease. Multiple mutations in these genes may occur, which highlights the importance of screening both. The detection of novel mutations strongly suggests that all coding regions should be systematically screened. Genotyping in hypertrophic cardiomyopathy enables a more precise diagnosis of the disease, with implications for risk stratification and genetic counseling.
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