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Updated: May 4, 2026

Investigating the Pathogenesis of MYH7 Mutation Gly823Glu in Familial Hypertrophic Cardiomyopathy using a Mouse Model
Published on: August 8, 2022
The novel mitochondrial 16S rRNA 2336T>C mutation is associated with hypertrophic cardiomyopathy
Zhong Liu1, Yanrui Song, Dan Li
1The First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, Zhejiang, China.
Insights
A novel mitochondrial DNA mutation (16S rRNA 2336T>C) is linked to hypertrophic cardiomyopathy (HCM) and atrioventricular block in a Chinese family. This discovery offers new insights into HCM pathogenesis.
Area of Science:
- Genetics
- Cardiology
- Mitochondrial Biology
Background:
- Hypertrophic cardiomyopathy (HCM) is a genetic heart condition characterized by left ventricular wall thickening.
- It affects approximately 0.2% of the general population, often presenting with variable severity.
Observation:
- A Chinese family with maternally inherited HCM displayed varying disease severity and onset ages.
- Affected maternal members required pacemakers due to complete atrioventricular block (AVB).
Findings:
- A novel homoplasmic mitochondrial DNA mutation, 16S rRNA 2336T>C, was identified exclusively in affected maternal family members.
- This mutation disrupts mitochondrial ribosome assembly, leading to reduced oxygen consumption, ATP synthesis, and increased reactive oxidative species.
- Electron microscopy revealed mitochondrial abnormalities, including elongated shapes and altered cristae in mutant cells.
Implications:
- The 16S rRNA 2336T>C mutation is implicated as a pathogenic factor in HCM.
- This is the first report linking a mitochondrial 16S rRNA mutation to maternally inherited HCM and AVB.
- Findings provide novel insights into the molecular mechanisms underlying HCM pathogenesis.
Background:
Hypertrophic cardiomyopathy (HCM) is a primary disorder characterised by asymmetric thickening of septum and left ventricular wall, with a prevalence of 0.2% in the general population.
Objective:
To describe a novel mitochondrial DNA mutation and its association with the pathogenesis of HCM.
Methods And Results:
All maternal members of a Chinese family with maternally transmitted HCM exhibited variable severity and age at onset, and were implanted permanent pacemakers due to complete atrioventricular block (AVB). Nuclear gene screening (MYH7, MYBPC3, TNNT2 and TNNI3) was performed, and no potential pathogenic mutation was identified. Mitochondrial DNA sequencing analysis identified a novel homoplasmic 16S rRNA 2336T>C mutation. This mutation was exclusively present in maternal members and absent in non-maternal members. Conservation index by comparison to 16 other vertebrates was 94.1%. This mutation disturbs the 2336U-A2438 base pair in the stem-loop structure of 16S rRNA domain III, which is involved in the assembly of mitochondrial ribosome. Oxygen consumption rate of the lymphoblastoid cells carrying 2336T>C mutation had decreased by 37% compared with controls. A reduction in mitochondrial ATP synthesis and an increase in reactive oxidative species production were also observed. Electron microscopic analysis indicated elongated mitochondria and abnormal mitochondrial cristae shape in mutant cells.
Conclusions:
It is suggested that the 2336T>C mutation is one of pathogenic mutations of HCM. This is the first report of mitochondrial 16S rRNA 2336T>C mutation and an association with maternally inherited HCM combined with AVB. Our findings provide a new insight into the pathogenesis of HCM.
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