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Reconstitution of the Raf-1-MEK-ERK signal transduction pathway in vitro
S G Macdonald1, C M Crews, L Wu
1Onyx Pharmaceuticals, Richmond, California 94806.
Abstract:
Raf-1 is a serine/threonine kinase which is essential in cell growth and differentiation. Tyrosine kinase oncogenes and receptors and p21ras can activate Raf-1, and recent studies have suggested that Raf-1 functions upstream of MEK (MAP/ERK kinase), which phosphorylates and activates ERK. To determine whether or not Raf-1 directly activates MEK, we developed an in vitro assay with purified recombinant proteins. Epitope-tagged versions of Raf-1 and MEK and kinase-inactive mutants of each protein were expressed in Sf9 cells, and ERK1 was purified as a glutathione S-transferase fusion protein from bacteria. Raf-1 purified from Sf9 cells which had been coinfected with v-src or v-ras was able to phosphorylate kinase-active and kinase-inactive MEK. A kinase-inactive version of Raf-1 purified from cells that had been coinfected with v-src or v-ras was not able to phosphorylate MEK. Raf-1 phosphorylation of MEK activated it, as judged by its ability to stimulate the phosphorylation of myelin basic protein by glutathione S-transferase-ERK1. We conclude that MEK is a direct substrate of Raf-1 and that the activation of MEK by Raf-1 is due to phosphorylation by Raf-1, which is sufficient for MEK activation. We also tested the ability of protein kinase C to activate Raf-1 and found that, although protein kinase C phosphorylation of Raf-1 was able to stimulate its autokinase activity, it did not stimulate its ability to phosphorylate MEK.
Insights
Raf-1 directly phosphorylates and activates MEK (MAP/ERK kinase), a key step in cell signaling. This phosphorylation by Raf-1 is sufficient for MEK activation, clarifying a crucial pathway in cell growth and differentiation.
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Raf-1 is a serine/threonine kinase vital for cell growth and differentiation.
- Raf-1 activation is influenced by tyrosine kinases and p21ras.
- Raf-1 is known to function upstream of MEK (MAP/ERK kinase), which activates ERK.
Purpose of the Study:
- To investigate whether Raf-1 directly activates MEK.
- To elucidate the mechanism of Raf-1 mediated MEK activation.
Main Methods:
- Developed an in vitro assay using purified recombinant Raf-1 and MEK proteins.
- Utilized epitope-tagged and kinase-inactive mutants of Raf-1 and MEK.
- Expressed proteins in Sf9 cells and purified ERK1 as a fusion protein.
Main Results:
- Purified Raf-1 phosphorylated both active and inactive MEK.
- Kinase-inactive Raf-1 failed to phosphorylate MEK.
- Raf-1 phosphorylation activated MEK's ability to phosphorylate myelin basic protein via ERK1.
Conclusions:
- MEK is a direct substrate of Raf-1.
- Phosphorylation by Raf-1 is sufficient for MEK activation.
- Protein kinase C phosphorylation of Raf-1 enhanced its autokinase activity but not MEK phosphorylation.