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Published on: August 8, 2022
OBSCN Mutations Associated with Dilated Cardiomyopathy and Haploinsufficiency
Steven Marston1, Cecile Montgiraud1, Alex B Munster1
1NHLI, Imperial College London, London, United Kingdom.
Insights
Mutations in the obscurin (OBSCN) gene can cause dilated cardiomyopathy (DCM) through haploinsufficiency. This study identified OBSCN mutations in DCM patients, suggesting it
Area of Science:
- Cardiovascular Genetics
- Molecular Cardiology
- Genetic basis of cardiomyopathies
Background:
- Functional consequences of dilated cardiomyopathy (DCM)-causing mutations are poorly understood.
- Limited tissue samples from heart transplant patients hinder direct investigation.
- Familial DCM necessitates exploring novel genetic contributors.
Purpose of the Study:
- To investigate mutations in 58 hypertrophic cardiomyopathy (HCM) or DCM-related genes.
- To identify novel genetic causes of familial DCM.
- To explore the role of obscurin (OBSCN) gene mutations in DCM pathogenesis.
Main Methods:
- Whole exon sequencing of explanted heart muscle from 30 familial DCM patients.
- Screening for mutations in 58 known HCM or DCM-related genes.
- Analysis of obscurin mRNA levels and obscurin protein expression via Western blot and immunohistochemistry.
Main Results:
- Identified 5 potentially disease-causing OBSCN mutations in 4 samples.
- Found other mutations in TTN, MYH7, and DSP genes.
- OBSCN mutations correlated with significantly reduced obscurin protein levels in DCM patient samples.
Conclusions:
- OBSCN mutations may cause DCM through haploinsufficiency.
- OBSCN gene mutations are a significant causal factor in DCM, potentially acting alone or with other mutations.
Background:
Studies of the functional consequences of DCM-causing mutations have been limited to a few cases where patients with known mutations had heart transplants. To increase the number of potential tissue samples for direct investigation we performed whole exon sequencing of explanted heart muscle samples from 30 patients that had a diagnosis of familial dilated cardiomyopathy and screened for potentially disease-causing mutations in 58 HCM or DCM-related genes.
Results:
We identified 5 potentially disease-causing OBSCN mutations in 4 samples; one sample had two OBSCN mutations and one mutation was judged to be not disease-related. Also identified were 6 truncating mutations in TTN, 3 mutations in MYH7, 2 in DSP and one each in TNNC1, TNNI3, MYOM1, VCL, GLA, PLB, TCAP, PKP2 and LAMA4. The mean level of obscurin mRNA was significantly greater and more variable in healthy donor samples than the DCM samples but did not correlate with OBSCN mutations. A single obscurin protein band was observed in human heart myofibrils with apparent mass 960 ± 60 kDa. The three samples with OBSCN mutations had significantly lower levels of obscurin immunoreactive material than DCM samples without OBSCN mutations (45±7, 48±3, and 72±6% of control level).Obscurin levels in DCM controls, donor heart and myectomy samples were the same.
Conclusions:
OBSCN mutations may result in the development of a DCM phenotype via haploinsufficiency. Mutations in the obscurin gene should be considered as a significant causal factor of DCM, alone or in concert with other mutations.
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