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July 1, 1995Circulation Research83 citations

Expression of a Mutation Causing Hypertrophic Cardiomyopathy Disrupts Sarcomere Assembly in Adult Feline Cardiac Myocytes

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AMAli J. MarianQYQiong YuDMDouglas L. Mann

Structured PICO

P
Population
Isolated adult feline cardiac myocytes
I
Intervention
Recombinant adenoviral construct expressing mutant βMyHC (Arg 403 Gln)
C
Comparator
Normal βMyHC construct, adenoviral vector alone, or uninfected control cardiocytes
O
Outcome
Disruption of sarcomere assembly and myofibrillar organization at 120 hours post-infectionsurrogate

The expression of the HCM-causing Arg 403 Gln mutation in βMyHC directly disrupts sarcomere assembly in adult cardiac myocytes, indicating this is a primary defect in hypertrophic cardiomyopathy.

Abstract

Abstract Mutations in the β-myosin heavy chain (βMyHC) induce hypertrophic cardiomyopathy (HCM), cardiac hypertrophy, and sarcomere disarray, with the latter being the characteristic hallmark. Thus, we sought to determine whether expression of mutant βMyHC in adult feline cardiac myocytes, a species known to develop HCM with a phenotype identical to that in humans, induces sarcomere disarray. A full-length βMyHC cDNA was cloned from a human heart cDNA library, and an HCM-causing mutation (Arg 403 Gln) was induced in the βMyHC cDNA by site-directed mutagenesis using polymerase chain reaction (PCR). The normal and mutant βMyHC cDNAs were cloned into pΔE1spIB shuttle vector, downstream from a cytomegalovirus (CMV) promoter. Replication-deficient recombinant adenoviral constructs (Ad5/CMV/βMyHC-N and Ad5/CMV/βMyHC-403) were generated through homologous recombination of pΔE1spIB/CMV/βMyHC-N or Ad5/CMV/βMyHC-403 and pBHG10 after cotransfection in 293 host cells. Infection of COS-1 cells with the βMyHC construct resulted in the expression of a full-length myosin protein. Efficiency of infection of isolated adult cardiac myocytes was >95%. Expression of the βMyHC constructs into mRNA at 48 hours after infection of feline cardiac myocytes was confirmed by reverse transcription–PCR. The net total protein and β-myosin synthesis were determined by using the amount of incorporation of 3 Hphenylalanine into total protein and β-myosin, respectively. Although the total amount of protein synthesis was equal among experimental groups, the net myosin synthesis at 48 hours was greater in cardiac myocytes infected with normal or mutant βMyHC constructs than control myocytes or those infected with vector alone ( P <.05). Electron microscopic examination showed only minor changes in the structure of sarcomeres in all experimental groups at 48 hours after infection. However, disruption of the sarcomeric structures at 120 hours after infection with the mutant βMyHC construct was observed in ≈50% of the myocytes examined, whereas the structure of the sarcomeres remained largely intact in myocytes infected with normal βMyHC construct, adenoviral vector alone, or control cardiocytes. Similar results were confirmed by immunofluorescence using MF-20 antibody to myosin. The results of this study indicate that disruption of sarcomere assembly and myofibrillar organization due to mutant βMyHC protein is the primary defect in HCM.

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Cite This Study

Marian et al. (1995) studied this question.

synapsesocial.com/papers/6a918e7c62841d9e29fb805ahttps://doi.org/10.1161/01.res.77.1.98
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Also Consider

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

  1. 1Hypertrophic cardiomyopathy mutation is expressed in messenger RNA of skeletal as well as cardiac muscle.1993 · 37 citations
  2. 2Highly efficient gene transfer into adult ventricular myocytes by recombinant adenovirus.1993 · 171 citations
  3. 3Developmental and functional adaptation of contractile proteins in cardiac and skeletal muscles1986 · 657 citations
  4. 4Detection of a new mutation in the beta-myosin heavy chain gene in an individual with hypertrophic cardiomyopathy.1992 · 87 citations
  5. 5Heterologous expression of a cardiomyopathic myosin that is defective in its actin interaction.1994 · 202 citations