Key result
Heterozygous RBM20 mutations linked to severe familial dilated cardiomyopathy with high mortality.
Why the study?
Dilated cardiomyopathy is a heritable, genetically heterogeneous disorder that remains idiopathic in the majority of patients, motivating the search for novel causative genes.
Are mutations in the RBM20 gene associated with familial dilated cardiomyopathy?
Observational
Are mutations in the RBM20 gene associated with familial dilated cardiomyopathy?
Effect estimate: LOD score >11.49
Mutations in the RNA binding motif protein 20 (RBM20) gene are a novel cause of familial dilated cardiomyopathy, associated with young age at diagnosis, end-stage heart failure, and high mortality.
OBJECTIVES: We sought to identify a novel gene for dilated cardiomyopathy (DCM). BACKGROUND: DCM is a heritable, genetically heterogeneous disorder that remains idiopathic in the majority of patients. Familial cases provide an opportunity to discover unsuspected molecular bases of DCM, enabling pre-clinical risk detection. METHODS: Two large families with autosomal-dominant DCM were studied. Genome-wide linkage analysis was used to identify a disease locus, followed by fine mapping and positional candidate gene sequencing. Mutation scanning was then performed in 278 unrelated subjects with idiopathic DCM, prospectively identified at the Mayo Clinic. RESULTS: Overlapping loci for DCM were independently mapped to chromosome 10q25-q26. Deoxyribonucleic acid sequencing of affected individuals in each family revealed distinct heterozygous missense mutations in exon 9 of RBM20, encoding ribonucleic acid (RNA) binding motif protein 20. Comprehensive coding sequence analyses identified missense mutations clustered within this same exon in 6 additional DCM families. Mutations segregated with DCM (peak composite logarithm of the odds score >11.49), were absent in 480 control samples, and altered residues within a highly conserved arginine/serine (RS)-rich region. Expression of RBM20 messenger RNA was confirmed in human heart tissue. CONCLUSIONS: Our findings establish RBM20 as a DCM gene and reveal a mutation hotspot in the RS domain. RBM20 is preferentially expressed in the heart and encodes motifs prototypical of spliceosome proteins that regulate alternative pre-messenger RNA splicing, thus implicating a functionally distinct gene in human cardiomyopathy. RBM20 mutations are associated with young age at diagnosis, end-stage heart failure, and high mortality.
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Brauch et al. (2009) conducted an observational in Dilated cardiomyopathy. RBM20 mutations vs. Absence of RBM20 mutations (controls) was evaluated on Identification of disease-causing genetic mutations (LOD score >11.49). Heterozygous missense mutations in the RBM20 gene were identified as a cause of familial dilated cardiomyopathy (LOD score >11.49), associating with young age at diagnosis and high mortality.
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