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Novel MYBPC3 Mutations in Indian Population with Cardiomyopathies
Deepa Selvi Rani1, Apoorva Kasala1, Perundurai S Dhandapany2
1Department of Population and Medical Genomics, CSIR-Centre for Cellular and Molecular Biology, Hyderabad, Telangana, India.
Insights
Mutations in the MYBPC3 gene are common causes of cardiomyopathies. This study identified novel single and compound MYBPC3 mutations in Indian patients, aiding diagnostic strategies and potential therapeutic targets.
Area of Science:
- Genetics
- Cardiology
- Molecular Biology
Background:
- Mutations in the Myosin Binding Protein C (MYBPC3) gene are a leading global cause of cardiomyopathies.
- Limited data exists on MYBPC3 mutations within the Indian population.
Purpose of the Study:
- To investigate the spectrum of MYBPC3 mutations in Indian patients with hypertrophic cardiomyopathy (HCM) and dilated cardiomyopathy (DCM).
- To establish the association of identified MYBPC3 variants with cardiomyopathies in India.
Main Methods:
- Targeted direct sequencing of the MYBPC3 gene was performed.
- 115 HCM patients, 127 DCM patients, and 197 healthy Indian controls were analyzed.
- Bioinformatic tools and co-segregation analysis were used to predict and confirm pathogenicity.
Main Results:
- 34 single nucleotide variations in MYBPC3 were detected, with 19 being novel.
- A splice site mutation and 16 missense mutations were identified in cardiomyopathy patients but not in controls.
- Seven pathogenic missense mutations and six compound mutations were found, correlating with severe disease phenotypes.
Conclusions:
- This study provides a comprehensive analysis of MYBPC3 mutations in the Indian population.
- Identified single and compound MYBPC3 mutations are associated with cardiomyopathies in India.
- Findings support the development of diagnostic strategies and therapeutic targets for cardiomyopathies.
Background:
Mutations in Myosin Binding Protein C (MYBPC3) are one of the most frequent causes of cardiomyopathies in the world, but not much data are available in India.
Methods:
We carried out targeted direct sequencing of MYBPC3 in 115 hypertrophic (HCM) and 127 dilated (DCM) cardiomyopathies against 197 ethnically matched healthy controls from India.
Results:
We detected 34 single nucleotide variations in MYBPC3, of which 19 were novel. We found a splice site mutation [(IVS6+2T) T>G] and 16 missense mutations in Indian cardiomyopathies [5 in HCM; E258K, T262S, H287L, R408M, V483A: 4 in DCM; T146N, V321L, A392T, E393K and 7 in both HCM and DCM; L104M, V158M, S236G, R272C, T290A, G522E, A626V], but those were absent in 197 normal healthy controls. Interestingly, we found 7 out of 16 missense mutations (V158M, E258K, R272C, A392T, V483A, G522E, and A626V) in MYBPC3 were altering the evolutionarily conserved native amino acids, accounted for 8.7% and 6.3% in HCM and DCM, respectively. The bioinformatic tools predicted that those 7 missense mutations were pathogenic. Moreover, the co-segregation of those 7 mutations in families further confirmed their pathogenicity. Remarkably, we also identified compound mutations within the MYBPC3 gene of 6 cardiomyopathy patients (5%) with more severe disease phenotype; of which, 3 were HCM (2.6%) [(1. K244K + E258K + (IVS6+2T) T>G); (2. L104M + G522E + A626V); (3. P186P + G522E + A626V]; and 3 were DCM (2.4%) [(1. 5'UTR + A392T; 2. V158M+G522E; and 3.V158M + T262T + A626V].
Conclusion:
The present comprehensive study on MYBPC3 has revealed both single and compound mutations in MYBPC3 and their association with disease in Indian Population with Cardiomyopathies. Our findings may perhaps help in initiating diagnostic strategies and eventually recognizing the targets for therapeutic interventions.
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