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Suppression of growth factor-mediated MAP kinase activation by v-raf in macrophages: a putative role for the MKP-1
S Krautwald1, D Büscher, P Dent
1Department of Immunobiology, Fraunhofer Institute for Toxicology and Molecular Biology, Hannover, Germany.
Abstract:
Many tyrosine kinase growth factor receptors activate the MAP Kinase (MAPK) pathway by stimulating the activity of the RAF kinase. In some, but not all cell types, the expression of activated RAF is sufficient to induce constitutive MAPK activation. In BAC-1.2F5 macrophages the expression of virally activated RAF does not correlate with constitutive MAPK activation; on the contrary, growth factor-mediated stimulation of MAPK activity is suppressed in these cells. Suppression correlates with v-RAF expression, as MAPK activation is normal in a revertant cell line that stopped expressing v-RAF. Inhibition of MAPK activation is associated with lack of ERK-2 tyrosine phosphorylation, and is not due to the suppression of CSF-1-mediated MEK activation. Pretreatment with vanadate restores growth factor-stimulated activation and tyrosine phosphorylation of MAPK in v-RAF-expressing macrophages, indicating the involvement of a tyrosine phosphatase. Interestingly, v-RAF-expressing macrophages contain low constitutive levels of MKP-1 mRNA, an immediate early gene that encodes a MAPK-specific phosphatase and is induced in the parental cell line by CSF-1 treatment. The restoration of MAPK activation by vanadate pretreatment and the presence of MKP-1 mRNA in v-RAF-expressing macrophages raise the intriguing possibility that in macrophages RAF may be feeding back on the MAPK pathway by participating in the control of MKP-1 expression.
Insights
In macrophages, viral RAF expression suppresses growth factor-stimulated MAPK activation, linked to low MKP-1 mRNA. Vanadate treatment restores MAPK activity, suggesting RAF influences MKP-1 gene expression.
Area of Science:
- Cellular Biology
- Signal Transduction
Background:
- Tyrosine kinase receptors activate the MAP Kinase (MAPK) pathway via RAF kinase.
- Activated RAF typically induces MAPK activation in many cell types.
Purpose of the Study:
- Investigate the role of RAF in MAPK pathway regulation in BAC-1.2F5 macrophages.
- Determine the mechanism behind suppressed MAPK activation in v-RAF expressing macrophages.
Main Methods:
- Compared MAPK activation in v-RAF expressing macrophages versus a revertant cell line.
- Assessed ERK-2 tyrosine phosphorylation and MEK activation.
- Utilized vanadate pretreatment to investigate phosphatase involvement.
- Quantified MKP-1 mRNA levels.
Main Results:
- Viral RAF expression in macrophages did not lead to constitutive MAPK activation.
- Growth factor-stimulated MAPK activation was suppressed in v-RAF expressing cells.
- Suppression correlated with v-RAF expression and lack of ERK-2 tyrosine phosphorylation.
- Vanadate pretreatment restored MAPK activation, indicating a tyrosine phosphatase role.
- v-RAF expressing macrophages showed low constitutive MKP-1 mRNA levels.
Conclusions:
- RAF may feedback on the MAPK pathway in macrophages by regulating MKP-1 expression.
- The findings suggest a novel regulatory mechanism for MAPK signaling in macrophages.
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