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Clinical genetics and outcome of left ventricular non-compaction cardiomyopathy
Farbod Sedaghat-Hamedani1,2, Jan Haas1,2, Feng Zhu1,3
1Department of Medicine III, Institute for Cardiomyopathies Heidelberg (ICH), University of Heidelberg, Im Neuenheimer Feld 410, 69120 Heidelberg, Germany.
Insights
Left ventricular non-compaction cardiomyopathy (LVNC) is a severe heart condition. Genetic analysis identified TTN, LMNA, and MYBPC3 as common causes, with titin-related issues in a quarter of patients, impacting clinical outcomes.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Left ventricular non-compaction cardiomyopathy (LVNC) is a significant cause of heart failure, arrhythmias, and sudden cardiac death.
- Understanding the genetic underpinnings and clinical trajectory of LVNC is crucial for patient management.
Purpose of the Study:
- To clinically and genetically characterize patients with LVNC.
- To identify the prevalence of variants in known and novel LVNC disease genes.
- To investigate the association between genetic variants and clinical outcomes.
Main Methods:
- Analysis of 95 LVNC patients from a registry with a median follow-up of 61 months.
- Cardiac phenotyping, molecular biomarker analysis, and whole-exome sequencing.
- Genetic classification using ACMG guidelines and familial segregation studies.
Main Results:
- LVNC patients experienced significantly more cardiovascular events than those with non-ischaemic dilated cardiomyopathy.
- Pathogenic variants in TTN, LMNA, and MYBPC3 were the most prevalent disease genes.
- A novel RBM20 variant (p.R634L) co-segregated with LVNC and caused titin mis-splicing.
Conclusions:
- Symptomatic LVNC has a severe clinical course.
- A titin-related pathomechanism affects approximately 25% of LVNC patients, necessitating consideration in genetic counseling.
- Pathogenic variants in Lamin A/C and RBM20 were linked to poorer outcomes.
Aims:
In this study, we aimed to clinically and genetically characterize LVNC patients and investigate the prevalence of variants in known and novel LVNC disease genes.
Introduction:
Left ventricular non-compaction cardiomyopathy (LVNC) is an increasingly recognized cause of heart failure, arrhythmia, thromboembolism, and sudden cardiac death. We sought here to dissect its genetic causes, phenotypic presentation and outcome.
Methods And Results:
In our registry with follow-up of in the median 61 months, we analysed 95 LVNC patients (68 unrelated index patients and 27 affected relatives; definite familial LVNC = 23.5%) by cardiac phenotyping, molecular biomarkers and exome sequencing. Cardiovascular events were significantly more frequent in LVNC patients compared with an age-matched group of patients with non-ischaemic dilated cardiomyopathy (hazard ratio = 2.481, P = 0.002). Stringent genetic classification according to ACMG guidelines revealed that TTN, LMNA, and MYBPC3 are the most prevalent disease genes (13 patients are carrying a pathogenic truncating TTN variant, odds ratio = 40.7, Confidence interval = 21.6-76.6, P < 0.0001, percent spliced in 76-100%). We also identified novel candidate genes for LVNC. For RBM20, we were able to perform detailed familial, molecular and functional studies. We show that the novel variant p.R634L in the RS domain of RBM20 co-segregates with LVNC, leading to titin mis-splicing as revealed by RNA sequencing of heart tissue in mutation carriers, protein analysis, and functional splice-reporter assays.
Conclusion:
Our data demonstrate that the clinical course of symptomatic LVNC can be severe. The identified pathogenic variants and distribution of disease genes-a titin-related pathomechanism is found in every fourth patient-should be considered in genetic counselling of patients. Pathogenic variants in the nuclear proteins Lamin A/C and RBM20 were associated with worse outcome.
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