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Familial Left Ventricular Non-Compaction Is Associated With a Rare p.V407I Variant in Bone Morphogenetic Protein 10
Keiichi Hirono1,2, Kazuyoshi Saito1,2,3, Undral Munkhsaikhan3,4
1Department of Pediatrics, Graduate School of Medicine, University of Toyama.
Insights
Novel mutations in NRG1 and BMP10 genes are linked to left ventricular non-compaction (LVNC) cardiomyopathy. Impaired BMP10 receptor binding and cellular dysfunction in mutant cells may explain the disease mechanism.
Area of Science:
- Cardiology
- Genetics
- Molecular Biology
Background:
- Left ventricular non-compaction (LVNC) is a heritable cardiomyopathy with unclear genetic underpinnings.
- Characterized by excessive trabeculation and thin compact myocardium, LVNC requires identification of causative genes and mechanisms.
Purpose of the Study:
- Identify novel LVNC-associated mutations in NOTCH-dependent genes.
- Investigate the functional consequences of identified mutations on cardiac cell function.
Main Methods:
- Screened 230 LVNC individuals using high-resolution melting analysis, followed by whole exome and Sanger sequencing.
- Assessed bone morphogenetic protein 10 (BMP10) dimerization, BMP receptor binding, and cellular responses (proliferation, differentiation, mechanical stretch tolerance) in cardiomyoblasts expressing wild-type or mutant BMP10.
Main Results:
- Identified rare variants p.W143*-NRG1 and p.V407I-BMP10 in unrelated LVNC probands.
- Mutant V407I-BMP10 showed weaker binding to BMP receptors (BMPR1a, BMPR2) compared to wild-type.
- V407I-BMP10 expression led to reduced cell proliferation and increased cell death under mechanical stretch.
Conclusions:
- The NRG1 (W143*) and BMP10 (V407I) variants are associated with LVNC.
- Impaired BMP receptor binding, altered proliferation, and reduced mechanical stretch tolerance in V407I-BMP10 mutant cardiomyoblasts contribute to myocardial non-compaction.
Background:
Left ventricular non-compaction (LVNC) is a heritable cardiomyopathy characterized by hypertrabeculation, inter-trabecular recesses and thin compact myocardium, but the genetic basis and mechanisms remain unclear. This study identified novel LVNC-associated mutations inNOTCH-dependent genes and investigated their mutational effects.
Methods And Results:
High-resolution melting screening was performed in 230 individuals with LVNC, followed by whole exome and Sanger sequencing of available family members. Dimerization of bone morphogenetic protein 10 (BMP10) and its binding to BMP receptors (BMPRs) were evaluated. Cellular differentiation, proliferation and tolerance to mechanical stretch were assessed in H9C2 cardiomyoblasts, expressing wild-type (WT) or mutant BMP10 delivered by adenoviral vectors. Rare variants, p.W143*-NRG1and p.V407I-BMP10, were identified in 2 unrelated probands and their affected family members. Although dimerization of mutant V407I-BMP10 was preserved like WT-BMP10, V407I-BMP10 pulled BMPR1a and BMPR2 receptors more weakly compared with WT-BMP10. On comparative gene expression and siRNA analysis, expressed BMPR1a and BMPR2 receptors were responsive to BMP10 treatment in H9C2 cardiomyoblasts. Expression of V407I-BMP10 resulted in a significantly lower rate of proliferation in H9C2 cells compared with WT-BMP10. Cyclic stretch resulted in destruction and death of V407I-BMP10 cells.
Conclusions:
The W143*-NRG1and V470I-BMP10variants are associated with LVNC. Impaired BMPR-binding ability, perturbed proliferation and differentiation processes and intolerance to stretch in V407I-BMP10 mutant cardiomyoblasts may underlie myocardial non-compaction.
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