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July 3, 2009Circulation Research242 citationsOpen Access

Evidence From Human Myectomy Samples That MYBPC3 Mutations Cause Hypertrophic Cardiomyopathy Through Haploinsufficiency

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SMSteven B. MarstonOCO’Neal CopelandAJAdam Jacques

Key Result

MYBPC3 mutations in hypertrophic cardiomyopathy resulted in significantly reduced levels of MyBP-C in myofibrils (0.76 vs 1.00 in donors, P<0.0005), supporting haploinsufficiency.

Key Points

  • The aim was to investigate haploinsufficiency as a mechanism in hypertrophic cardiomyopathy due to MYBPC3 mutations.
  • Comparative analysis of left ventricular muscle from myectomy patients and donor hearts.
  • Quantitation of MyBP-C protein and mRNA levels using immunoblotting and RT-PCR.
  • Evaluation of mutations and protein levels in myectomy samples.
  • Nine of 37 myectomy samples had MYBPC3 mutations, including 2 missense mutations and 7 premature terminations.
  • Lowered MyBP-C levels in tissue with mutations showed 0.76+/-0.03 compared to 1.00+/-0.05 in donor hearts (P<0.0005).
  • Absence of truncated MyBP-C suggests no dominant negative effect, supporting the haploinsufficiency theory.

Study Design

Type

Observational (n=37)

Structured PICO

Does haploinsufficiency of MYBPC3 cause hypertrophic cardiomyopathy?

P
Population
37 left ventricular muscle samples from patients undergoing surgical myectomy for hypertrophic cardiomyopathy compared with donor hearts.
E
Exposure
Presence of MYBPC3 mutations (truncation or missense)
C
Comparator
Donor hearts and non-MYBPC3 mutant myectomies
O
Outcome
MyBP-C protein and mRNA levelssurrogate

MYBPC3 mutations cause hypertrophic cardiomyopathy through haploinsufficiency rather than a dominant negative effect, as evidenced by reduced full-length protein levels and absence of truncated peptides in human myectomy samples.

Main Result

Absolute Event Rate: 0.76% vs 1%

p-value: p=<0.0005

Abstract

RATIONALE: Most sarcomere gene mutations that cause hypertrophic cardiomyopathy are missense alleles that encode dominant negative proteins. The potential exceptions are mutations in the MYBPC3 gene (encoding cardiac myosin-binding protein-C MyBP-C), which frequently encode truncated proteins. OBJECTIVE: We sought to determine whether there was evidence of haploinsufficiency in hypertrophic cardiomyopathy caused by MYBPC3 mutations by comparing left ventricular muscle from patients undergoing surgical myectomy with samples from donor hearts. METHODS AND RESULTS: MyBP-C protein and mRNA levels were quantitated using immunoblotting and RT-PCR. Nine of 37 myectomy samples had mutations in MYBPC3: 2 missense alleles (Glu258Lys, Arg502Trp) and 7 premature terminations. No specific truncated MyBP-C peptides were detected in whole muscle homogenates of hypertrophic cardiomyopathy tissue. However, the overall level of MyBP-C in myofibrils was significantly reduced (P<0.0005) in tissue containing either a truncation or missense MYBPC3 mutation: 0.76+/-0.03 compared with 1.00+/-0.05 in donor and 1.01+/-0.06 in non-MYBPC3 mutant myectomies. CONCLUSIONS: The absence of any detectable truncated MyBP-C argues against its incorporation in the myofiber and any dominant negative effect. In contrast, the lowered relative level of full length protein in both truncation and missense MYBPC3 mutations argues strongly that haploinsufficiency is sufficient to cause the disease.

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Cite This Study

Marston et al. (2009) conducted an observational in Hypertrophic cardiomyopathy (n=37). MYBPC3 mutations vs. Donor hearts and non-MYBPC3 mutant myectomies was evaluated on Overall level of MyBP-C in myofibrils (p=<0.0005). MYBPC3 mutations in hypertrophic cardiomyopathy resulted in significantly reduced levels of MyBP-C in myofibrils (0.76 vs 1.00 in donors, P<0.0005), supporting haploinsufficiency.

synapsesocial.com/papers/6a207ede55df6adc1bcd41a9https://doi.org/10.1161/circresaha.109.202440
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