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Updated: Sep 5, 2025

Investigating the Pathogenesis of MYH7 Mutation Gly823Glu in Familial Hypertrophic Cardiomyopathy using a Mouse Model
Published on: August 8, 2022
Sarcomeric gene mutations in phenotypic positive hypertrophic cardiomyopathic patients in Indian population
Syed Abrar Ahmad1, Chandrakant Chavan2, Rajesh Badani3
1Department of Zoology, Savitribai Phule Pune University, Pune- India. varsha3w@unipune.ac.in.
Insights
This study investigated genetic mutations in hypertrophic cardiomyopathy (HCM) patients in Pune, finding MYBPC3 gene mutations are most common. Double gene mutations showed less severe disease than single mutations or no mutations.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Hypertrophic cardiomyopathy (HCM) is a genetic heart disorder with varied symptoms and genetic causes.
- It affects 1 in 500 people and carries a high risk of sudden cardiac death.
- Understanding the genetic basis of HCM is crucial for diagnosis and treatment.
Purpose of the Study:
- To identify mutation status in sarcomeric genes within the urbanizing Pune population.
- To correlate specific gene mutations with clinical features of HCM.
- To analyze the impact of single versus double gene mutations on disease severity.
Main Methods:
- Patient recruitment from Pune hospitals following 2-D echocardiography screening.
- DNA extraction from blood samples, followed by PCR amplification of selected gene exons.
- Restriction digestion of amplimers and Single-Strand Conformation Polymorphism (SSCP) technique for mutation detection.
Main Results:
- MYBPC3 gene exhibited the highest mutation load; most variations were classified as benign.
- MYH7 gene mutations impacted splicing, creating new Exon Splicing Enhancer sites.
- I736T mutation in MYH7 potentially alters protein structure; two novel mutations and one variation were identified.
Conclusions:
- MYBPC3 is the most frequently mutated sarcomeric gene in the studied Pune population.
- MYH7 mutations can affect protein structure and function through splicing alterations.
- Double gene mutations in HCM patients did not correlate with more severe pathophysiology compared to single mutations or genotypically negative cases.
Abstract:
HCM is a monogenic cardiac disorder with a high risk of sudden cardiac death, heterogeneous phenotypic expression and genetic profile. HCM is expressed as autosomal dominant in fashion with the prevalence of 1:500 in the general population. The main objective of the current study was to unravel the mutation status in sarcomeric genes in urbanizing Pune population. HCM patients were recruited from Bharti hospital and Poona hospital and research centre, Pune after being screened by 2-D echocardiography. DNA was extracted from whole blood samples and PCR amplification was performed for selected exons from pre-selected genes, amplimers of >300 b.p were restriction digested and the SSCP technique was optimized for maximum result output. HCM patients shows the maximum prevalence of mitral regurgitation (23.3%) while the minimum prevalence was left auricular diameter (10%). Maximum variation spectrum was present in MYBPC3 genes as most of them were "benign" type as per Polyphen-2 tool status. Mutations in the MYH7 gene produce a prominent impact on splicing by the creation of a new SRP40 binding site (Exon Splicing Enhancer) as predicted by Human Splicing Finder 3.1. I736T mutation in the MYH7 gene results in replacement of β-strand by α-helix upstream from mutation site which may have a profound impact on protein tertiary structure as predicted by Polyphen-2 tool (probably damaging-1.00). Also, two 'novel' mutations and one 'novel' variation were reported in the present study. Thus, the MYBPC3 gene shows maximum mutation load among other sarcomeric genes. Double gene mutations do not represent much severe pathophysiology as compared to single gene mutated and genotypic negative HCM patients.
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