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Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
The oncogenic forms of N-ras or H-ras prevent skeletal myoblast differentiation
Abstract:
Differentiation of skeletal muscle involves withdrawal of myoblasts from the cell cycle, fusion to form myotubes, and the coordinate expression of a variety of muscle-specific gene products. Fibroblast growth factor and type beta transforming growth factor specifically inhibit myogenesis; however, the transmembrane signaling pathways responsible for suppression of differentiation by these growth factors remain elusive. Because ras proteins have been implicated in the transduction of growth factor signals across the plasma membrane, we used DNA-mediated gene transfer to investigate the potential involvement of this family of regulatory proteins in the control of myogenesis. Transfection of the mouse skeletal muscle cell line C2 with the oncogenic forms of H-ras or N-ras completely suppressed both myoblast fusion and induction of the muscle-specific gene products nicotinic acetylcholine receptor and creatine kinase. Inhibition of differentiation by activated ras genes occurred at the level of muscle-specific mRNA accumulation. In contrast, proto-oncogenic forms of N-ras or H-ras had no apparent effects on the ability of C2 cells to differentiate. Myoblasts transfected with activated ras genes exhibited normal growth properties and ceased proliferating in the absence of mitogens, indicating that ras inhibited differentiation through a mechanism independent of cell proliferation. These results demonstrate that activated ras gene products mimic the inhibitory effects of fibroblast growth factor and type beta transforming growth factor on myogenic differentiation and suggest that each of these regulators of myogenesis may operate through a common intracellular pathway.
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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