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October 1, 1987Journal of Clinical Investigation200 citationsOpen Access

Induction of the skeletal alpha-actin gene in alpha 1-adrenoceptor-mediated hypertrophy of rat cardiac myocytes.

NBN.H. BishopricPSPaul SimpsonCOCharles P. Ordahl

Key Points

  • This research aims to investigate the molecular signals behind hypertrophy and gene expression changes in cardiac myocytes.
  • Cultured neonatal rat cardiac myocytes were used for experiments.

Structured PICO

Does alpha-1 adrenergic stimulation induce skeletal alpha-actin gene expression in cultured neonatal rat cardiac myocytes?

P
Population
Primary cultures of neonatal rat heart muscle cells (cardiac myocytes)
I
Intervention
Alpha-1 adrenergic receptor stimulation using norepinephrine (2 µM)
C
Comparator
Diluent control (100 µM ascorbic acid)
O
Outcome
Expression levels of skeletal alpha-actin (sACT) and cardiac alpha-actin (cACT) mRNAsurrogate

Alpha-1 adrenergic receptor stimulation is identified as a molecular mediator of early developmental isogene reexpression (skeletal alpha-actin) during cardiac myocyte hypertrophy.

Abstract

Myocardial hypertrophy in vivo is associated with reexpression of contractile protein isogenes characteristic of fetal and neonatal development. The molecular signals for hypertrophy and isogene switching are unknown. We studied alpha (sarcomeric)-actin messenger RNA (mRNA) expression in cultured cardiac myocytes from the neonatal rat. In the cultured cells, as in the adult heart in vivo, expression of cardiac alpha-actin (cACT) predominated over that of skeletal alpha-actin (sACT) mRNA, the fetal/neonatal isoform. alpha 1-Adrenergic receptor stimulation induced hypertrophy of these cells, increasing total RNA and cytoskeletal actin mRNA by 1.8-fold over control, and total alpha-actin mRNA by 4.3 fold. This disproportionate increase in total alpha-actin mRNA was produced by a preferential induction of sACT mRNA, which increased by 10.6-fold over control versus only 2.6-fold for cACT mRNA. The alpha 1-adrenoceptor is the first identified molecular mediator of early developmental isogene reexpression in cardiac myocyte hypertrophy.

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Cite This Study

Bishopric et al. (1987) studied this question.

synapsesocial.com/papers/6a17ce8d4f2b3115b013089fhttps://doi.org/10.1172/jci113179
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Also Consider

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

  1. 1Relationship between myosin isoenzyme composition, hemodynamics, and myocardial structure in various forms of human cardiac hypertrophy.1985 · 116 citations
  2. 2Structure and developmental expression of the chick α-actin gene1980 · 50 citations
  3. 3Cardiac Sympathetic Nerves as the Final Common Pathway in the Induction of Adaptive Cardiac Hypertrophy1981 · 182 citations
  4. 4Mouse immunoglobulin genes: a bacterial plasmid containing the entire coding sequence for a pre-γ 2a heavy chain1980 · 81 citations
  5. 5α-Skeletal and α-Cardiac Actin Genes Are Coexpressed in Adult Human Skeletal Muscle and Heart1983 · 234 citations