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July 15, 1997Journal of Clinical Investigation169 citationsOpen Access

Novel splice donor site mutation in the cardiac myosin-binding protein-C gene in familial hypertrophic cardiomyopathy. Characterization Of cardiac transcript and protein.

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WRWolfgang RottbauerMGMathias GautelJZJörg Zehelein

Key Result

A novel splice donor site mutation in the cardiac myosin-binding protein-C gene is transcribed to mRNA but does not produce detectable truncated protein in the myocardium of patients with familial hypertrophic cardiomyopathy.

Study Design

Type

Observational (n=51)

Multicenter

No

Structured PICO

P
Population
A family with familial hypertrophic cardiomyopathy linked to polymorphic markers on chromosome 11.
I
Intervention
Characterization of cardiac transcript and protein for a novel splice donor site mutation in the cardiac myosin-binding protein-C gene.
O
Outcome
Presence of mutated mRNA and truncated cardiac myosin-binding protein-C in lymphocytes and endomyocardial biopsies.surrogate

The discovery that a splice donor site mutation in the cardiac myosin-binding protein-C gene does not produce a truncated 'poison' protein suggests alternative mechanisms for familial hypertrophic cardiomyopathy.

Limitations

  • Traces of mutant MyBP-C could remain undetected as the Western blot detection limit was 1.5% of wild-type protein.
  • Cell culture models and transfection assays may not reflect the assembly control of myofibrillar proteins in the diseased myocardium.

Abstract

Familial hypertrophic cardiomyopathy is a disease generally believed to be caused by mutations in sarcomeric proteins. In a family with hypertrophic cardiomyopathy linked to polymorphic markers on chromosome 11, we found a new mutation of a splice donor site of the cardiac myosin-binding protein-C gene. This mutation causes the skipping of the associated exon in mRNA from lymphocytes and myocardium. Skipping of the exon with a consecutive reading frame shift leads to premature termination of translation and is thus expected to produce a truncated cardiac myosin-binding protein-C with loss of the myosin- and titin-binding COOH terminus. However, Western blot analysis of endomyocardial biopsies from histologically affected left ventricular myocardium failed to show the expected truncated protein. These data show for the first time that a splice donor site mutation in the myosin-binding protein-C gene is transcribed to cardiac mRNA. Truncated cardiac myosin-binding protein-C does not act as a "poison polypeptide," since it seems not to be incorporated into the sarcomere in significant amounts. The absence of mutant protein and of significantly reduced amounts of wild-type protein in the presence of the mutated mRNA argues against the "poison protein" and the "null allele" hypotheses and suggests yet unknown mechanisms relevant to the genesis of chromosome-11- associated familial hypertrophic cardiomyopathy.

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Cite This Study

Rottbauer et al. (1997) conducted an observational in Familial hypertrophic cardiomyopathy (n=51). Cardiac myosin-binding protein-C gene mutation vs. Unaffected individuals was evaluated on Detection of truncated cardiac MyBP-C protein in myocardial tissue. A novel splice donor site mutation in the cardiac myosin-binding protein-C gene is transcribed to mRNA but does not produce detectable truncated protein in the myocardium of patients with familial hypertrophic cardiomyopathy.

synapsesocial.com/papers/6a0f2a65a7a2fed64abdc5c4https://doi.org/10.1172/jci119555
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Genetic dissection of Drosophila myofibril formation: effects of actin and myosin heavy chain null alleles.1989 · 163 citations
  2. 2A Mouse Model of Familial Hypertrophic Cardiomyopathy1996 · 559 citations
  3. 3Drosophila melanogaster troponin-T mutations engender three distinct syndromes of myofibrillar abnormalities1990 · 123 citations
  4. 4Fast and sensitive silver staining of DNA in polyacrylamide gels1991 · 2,873 citations
  5. 5Access to a Messenger RNA Sequence or Its Protein Product Is Not Limited by Tissue or Species Specificity1989 · 307 citations