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A Novel Truncating LMNA Mutation in Patients with Cardiac Conduction Disorders and Dilated Cardiomyopathy
Hiroshi Kawakami1, Akiyoshi Ogimoto1, Naohito Tokunaga1
1Department of Cardiology, Pulmonology, Hypertension & Nephrology, Ehime University Graduate School of Medicine.
Insights
Researchers identified a new lamin A/C (LMNA) gene mutation causing inherited cardiac conduction disorders (CCDs) and dilated cardiomyopathy (DCM). Clinical severity varied by gender within the family, suggesting multiple contributing factors in laminopathies.
Area of Science:
- Genetics and Molecular Biology
- Cardiology
- Human Pathology
Background:
- Laminopathies present with cardiac conduction disorders (CCDs) and dilated cardiomyopathy (DCM), but show significant clinical variability.
- Understanding the genetic basis and variability factors is crucial for managing these inherited cardiac conditions.
Purpose of the Study:
- To identify the causal mutation responsible for inherited CCD and DCM in a Japanese family.
- To investigate the underlying causes of clinical variability among affected family members.
Main Methods:
- Targeted resequencing of 174 inherited cardiovascular disease-associated genes was performed on five family members.
- Novel mutations were confirmed using Sanger sequencing.
- Clinical severity and variability were assessed through long-term medical records.
Main Results:
- A novel heterozygous truncating lamin A/C (LMNA) mutation (c.774delG) was identified in all four affected individuals.
- This LMNA mutation is predicted to cause a frameshift and premature termination, implicating it as the causal mutation.
- Gender-specific clinical variability was observed, with affected males showing earlier onset and more severe DCM than females.
Conclusions:
- A novel truncating LMNA mutation is associated with CCD and DCM in this Japanese family.
- Gender influences the clinical severity of laminopathy within families.
- Clinical variability in laminopathies likely results from a combination of genetic and other factors.
Abstract:
The cardiac phenotype of laminopathies is characterized by cardiac conduction disorders (CCDs) and dilated cardiomyopathy (DCM). Although laminopathies have been considered monogenic, they exhibit a remarkable degree of clinical variability. This case series aimed to detect the causal mutation and to investigate the causes of clinical variability in a Japanese family with inherited CCD and DCM.Of the five family members investigated, four had either CCD/DCM or CCD alone, while one subject had no cardiovascular disease and acted as a normal control. We performed targeted resequencing of 174 inherited cardiovascular disease-associated genes in this family and pathological mutations were confirmed using Sanger sequencing. The degree of clinical severity and variability were also evaluated using long-term medical records. We discovered a novel heterozygous truncating lamin A/C (LMNA) mutation (c.774delG) in all four subjects with CCD. Because this mutation was predicted to cause a frameshift mutation and premature termination (p.Gln258HisfsTer222) in LMNA, we believe that this LMNA mutation was the causal mutation in this family with CCD and laminopathies. In addition, gender-specific intra-familiar clinical variability was observed in this Japanese family where affected males exhibited an earlier onset of CCD and more severe DCM compared to affected females. Using targeted resequencing, we discovered a novel truncating LMNA mutation associated with CCD and DCM in this family characterized by gender differences in clinical severity in LMNA carriers. Our results suggest that in patients with laminopathy, clinical severity may be the result of multiple factors.
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