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Divergence in the G-protein-coupled receptor mitogenic signalling pathway at the level of Raf kinase
1Department of Internal Medicine, University of California, Davis 95616, USA.
Abstract:
While activation of tyrosine kinase growth factor receptors is accompanied by hyperphosphorylation of Raf-1, stimulation of receptors coupled to G-proteins has in some cases been shown to result in activation of a non-Raf MEKK rather than of Raf itself. Our finding (Weiss, R. H., and Nuccitelli, R. (1992) J. Biol. Chem. 267, 5608-5613) that the thrombin receptor requires tyrosine phosphorylation for its mitogenic effect in vascular smooth muscle cells led us to search for the molecules which are being tyrosine phosphorylated by this receptor. To determine whether mitogenic signalling of G-protein-coupled growth factor receptors results in tyrosine phosphorylation of Raf, we examined activation of Raf by two such receptors. Both thrombin and angiotensin II are mitogenic in NIH3T3 cells, but only thrombin causes hyperphosphorylation of Raf-1. Activation of Raf by thrombin is associated with phosphorylation of Raf-1 on tyrosine residues, whereas activation of Raf by angiotensin II does not involve significant tyrosine phosphorylation. However, Shc is tyrosine phosphorylated by both thrombin and angiotensin II. Thus, there exists a divergence in the mitogenic signalling pathways of the G-protein-coupled receptors relative to the Raf signalling cascade. While both thrombin and angiotensin II phosphorylate Shc and activate Raf catalytic activity, only thrombin phosphorylated Raf-1 on tyrosine. This signalling through disparate Raf-coupled pathways suggests one means by which the G-protein-coupled receptors may confer specificity in their signalling properties.
Insights
G-protein-coupled receptors activate distinct Raf signaling pathways. While both thrombin and angiotensin II activate Raf, only thrombin induces tyrosine phosphorylation of Raf-1, suggesting specific signaling mechanisms.
Area of Science:
- Cellular signaling pathways
- Molecular biology
- Biochemistry
Background:
- Tyrosine kinase growth factor receptor activation leads to Raf-1 hyperphosphorylation.
- G-protein-coupled receptor stimulation can activate MEKKs or Raf.
- Thrombin receptor activation requires tyrosine phosphorylation for mitogenesis in vascular smooth muscle cells.
Purpose of the Study:
- To investigate if G-protein-coupled growth factor receptors trigger Raf tyrosine phosphorylation.
- To examine Raf activation by thrombin and angiotensin II receptors.
- To identify molecules tyrosine phosphorylated by the thrombin receptor.
Main Methods:
- Stimulation of NIH3T3 cells with thrombin and angiotensin II.
- Analysis of Raf-1 and Shc phosphorylation status (tyrosine and overall).
- Assessment of Raf catalytic activity.
Main Results:
- Both thrombin and angiotensin II are mitogenic in NIH3T3 cells.
- Thrombin causes hyperphosphorylation of Raf-1, including tyrosine phosphorylation.
- Angiotensin II activates Raf but without significant tyrosine phosphorylation of Raf-1; Shc is tyrosine phosphorylated by both agonists.
- Raf catalytic activity is activated by both thrombin and angiotensin II.
Conclusions:
- G-protein-coupled receptors exhibit divergent signaling pathways concerning the Raf cascade.
- Specific tyrosine phosphorylation of Raf-1 by thrombin, but not angiotensin II, highlights distinct signaling mechanisms.
- Differential Raf-coupled pathway activation by G-protein-coupled receptors contributes to signaling specificity.