The oncogenic forms of N-ras or H-ras prevent skeletal myoblast differentiation

Insights

Activated ras genes, like certain growth factors, block skeletal muscle differentiation by inhibiting muscle-specific gene expression. This suggests a common signaling pathway regulates myogenesis.

Area of Science:

  • Molecular Biology
  • Cell Biology
  • Developmental Biology

Background:

  • Skeletal muscle differentiation (myogenesis) involves cell cycle withdrawal, fusion, and muscle-specific gene expression.
  • Fibroblast growth factor (FGF) and transforming growth factor-beta (TGF-β) inhibit myogenesis, but their signaling pathways are unclear.
  • Ras proteins are involved in transmitting growth factor signals across the cell membrane.

Purpose of the Study:

  • To investigate the role of ras proteins in controlling myogenesis.
  • To determine if ras proteins mediate the inhibitory effects of FGF and TGF-β on muscle differentiation.

Main Methods:

  • DNA-mediated gene transfer (transfection) was used to introduce ras genes into the C2 mouse skeletal muscle cell line.
  • The effects of oncogenic and proto-oncogenic forms of H-ras and N-ras on myoblast differentiation were assessed.
  • Muscle-specific gene product induction (nicotinic acetylcholine receptor, creatine kinase) and mRNA accumulation were measured.

Main Results:

  • Transfection with oncogenic H-ras or N-ras completely suppressed myoblast fusion and the induction of muscle-specific genes.
  • Ras inhibition of differentiation occurred at the level of muscle-specific mRNA accumulation.
  • Activated ras genes mimicked the inhibitory effects of FGF and TGF-β on myogenesis, independent of cell proliferation.

Conclusions:

  • Activated ras gene products play a significant role in suppressing myogenic differentiation.
  • Ras proteins may act through a common intracellular pathway shared with FGF and TGF-β to regulate myogenesis.

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