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Uncoupling Raf1 from MEK1/2 impairs only a subset of cellular responses to Raf activation
G Pearson1, R Bumeister, D O Henry
1Departments of Cell Biology and Pharmacology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
Abstract:
The Raf family of serine/threonine protein kinases is intimately involved in the transmission of cell regulatory signals controlling proliferation and differentiation. The best characterized Raf substrates are MEK1 and MEK2. The activation of MEK1/2 by Raf is required to mediate many of the cellular responses to Raf activation, suggesting that MEK1/2 are the dominant Raf effector proteins. However, accumulating evidence suggests that there are additional Raf substrates and that subsets of Raf-induced regulatory events are mediated independently of Raf activation of MEK1/2. To examine the possibility that there is bifurcation at the level of Raf in activation of MEK1/2-dependent and MEK1/2-independent cell regulatory events, we engineered a kinase-active Raf1 variant (RafBXB(T481A)) with an amino acid substitution that disrupts MEK1 binding. We find that disruption of MEK1/2 association uncouples Raf from activation of ERK1/2, induction of serum-response element-dependent gene expression, and induction of growth and morphological transformation. However, activation of NF-kappaB-dependent gene expression and induction of neurite differentiation were unimpaired. In addition, Raf-dependent activation of p90 ribosomal S6 kinase was only slightly impaired. These results support the hypothesis that Raf kinases utilize multiple downstream effectors to regulate distinct cellular activities.
Insights
Raf kinases control cell growth and differentiation. This study engineered a Raf1 variant to show that Raf signaling bifurcates, using MEK1/2-dependent and independent pathways to regulate distinct cellular activities.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Signal transduction
Background:
- Raf kinases are key regulators of cell proliferation and differentiation.
- MEK1 and MEK2 are known major substrates of Raf, mediating many cellular responses.
- Evidence suggests Raf has additional substrates and regulates some events independently of MEK1/2.
Purpose of the Study:
- To investigate if Raf signaling bifurcates into MEK1/2-dependent and MEK1/2-independent pathways.
- To engineer a Raf1 variant that disrupts MEK1 binding to test this hypothesis.
Main Methods:
- Engineered a kinase-active Raf1 variant (RafBXB(T481A)) with a mutation disrupting MEK1 binding.
- Assessed the impact of this mutation on downstream signaling events and cellular responses.
Main Results:
- Disruption of MEK1/2 binding uncoupled Raf from ERK1/2 activation, gene expression (SRE), growth, and morphological transformation.
- Activation of NF-kappaB-dependent gene expression and neurite differentiation remained unimpaired.
- Raf-dependent p90 ribosomal S6 kinase activation was only slightly impaired.
Conclusions:
- Raf kinases utilize multiple downstream effectors to regulate distinct cellular activities.
- Supports a model of signal bifurcation at the Raf level.
- Identifies MEK1/2-independent pathways for specific Raf-mediated cellular events.