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Both p21ras and pp60v-src are required, but neither alone is sufficient, to activate the Raf-1 kinase
N G Williams1, T M Roberts, P Li
1Dana-Farber Cancer Institute, Boston, MA 02115.
Abstract:
The raf genes encode a family of cytoplasmic proteins with intrinsic protein-serine/threonine kinase activity. The c-raf gene is the cellular homolog of v-raf, the transforming gene of murine sarcoma virus 3611. The constitutive kinase activity of the v-Raf protein has been implicated in transformation and mitogenesis. The activity of Raf-1, the protein product of the c-raf gene, is normally suppressed by a regulatory N-terminal domain. Activation of various tyrosine-kinase growth factor receptors results in activation of Raf-1 and its hyperphosphorylation. Further, Raf-1 has been shown to act either downstream or independently of the p21ras protein, as indicated by experiments involving microinjection of anti-Ras antibodies. To investigate the potential role of p21ras in the activation of Raf-1 by tyrosine kinases, we have used the baculovirus/Sf9 cell system to overproduce various wild-type and mutant forms of pp60src, p21ras, and Raf-1 proteins. We show that either pp60v-src or p21c-ras can independently activate the autokinase activity of Raf-1, but only to a limited extent. Surprisingly, both pp60v-src and p21c-ras are required to fully activate Raf-1. Analysis of the Raf-1 autokinase activity in vitro shows that Raf-1 autophosphorylation sites are distributed equally on serine and threonine residues. When Raf-1 is analyzed by immunoblotting, as previously reported for mammalian cell experiments, a marked increase in the apparent molecular weight of Raf-1 is seen only when it is coexpressed with both pp60v-src and p21ras.
Insights
The raf kinase pathway involves Raf-1, a protein regulated by tyrosine kinases and p21ras. Both pp60v-src and p21c-ras are necessary for full Raf-1 activation, impacting cell growth and transformation.
Area of Science:
- Molecular Biology
- Cell Signaling
- Oncogenesis
Background:
- Raf proteins are serine/threonine kinases involved in cell signaling.
- c-raf is the cellular homolog of the viral transforming gene v-raf.
- Raf-1 activity is regulated by an N-terminal domain and activated by tyrosine kinases.
Purpose of the Study:
- To investigate the role of p21ras in tyrosine kinase-mediated Raf-1 activation.
- To elucidate the interplay between pp60src, p21ras, and Raf-1.
Main Methods:
- Utilized the baculovirus/Sf9 insect cell system for protein overproduction.
- Produced wild-type and mutant forms of pp60src, p21ras, and Raf-1.
- Analyzed Raf-1 autokinase activity in vitro and by immunoblotting.
Main Results:
- pp60v-src and p21c-ras independently activate Raf-1 to a limited extent.
- Full activation of Raf-1 requires coexpression of both pp60v-src and p21c-ras.
- Raf-1 autophosphorylation occurs on both serine and threonine residues.
Conclusions:
- Both pp60src and p21ras are crucial for the complete activation of Raf-1.
- This cooperative activation mechanism is essential for downstream signaling events.
- Findings contribute to understanding oncogenic transformation pathways.