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Characterize Disease-related Mutants of RAF Family Kinases by Using a Set of Practical and Feasible Methods
Published on: July 17, 2019
Different Raf protein kinases mediate different signaling pathways to stimulate E3 ligase RFFL gene expression in
Xiaoqing Gan1, Chen Wang1, Maulik Patel2
1Department of Pharmacology and Program in Vascular Biology and Therapeutics, Yale School of Medicine, New Haven, Connecticut 06520.
Abstract:
We previously characterized a Gα12-specific signaling pathway that stimulates the transcription of the E3 ligase RFFL via the protein kinase ARAF and ERK. This pathway leads to persistent PKC activation and is important for sustaining fibroblast migration. However, questions remain regarding how Gα12 specifically activates ARAF, which transcription factor is involved in Gα12-mediated RFFL expression, and whether RFFL is important for cell migration stimulated by other signaling mechanisms that can activate ERK. In this study, we show that replacement of the Gα12 residue Arg-264 with Gln, which is the corresponding Gα13 residue, abrogates the ability of Gα12 to interact with or activate ARAF. We also show that Gα12 can no longer interact with and activate an ARAF mutant with its C-terminal sequence downstream of the kinase domain being replaced with the corresponding CRAF sequence. These results explain why Gα12, but not Gα13, specifically activates ARAF but not CRAF. Together with our finding that recombinant Gα12 is sufficient for stimulating the kinase activity of ARAF, this study reveals an ARAF activation mechanism that is different from that of CRAF. In addition, we show that this Gα12-ARAF-ERK pathway stimulates RFFL transcription through the transcription factor c-Myc. We further demonstrate that EGF, which signals through CRAF, and an activated BRAF mutant also activate PKC and stimulate cell migration through up-regulating RFFL expression. Thus, RFFL-mediated PKC activation has a broad significance in cell migration regulation.
Insights
G protein Gα12 specifically activates the protein kinase ARAF, distinct from Gα13. This pathway, involving ERK and c-Myc, upregulates RFFL expression, crucial for sustained cell migration and PKC activation.
Area of Science:
- Cellular signaling pathways
- Molecular mechanisms of cell migration
- G protein-coupled receptor signaling
Background:
- A previously identified Gα12 pathway activates ARAF and ERK, leading to RFFL transcription, PKC activation, and fibroblast migration.
- Key questions remained regarding Gα12's specific ARAF activation mechanism, the transcription factor for Gα12-mediated RFFL expression, and RFFL's role in other ERK-activating pathways.
Purpose of the Study:
- To elucidate the molecular basis for Gα12's specific activation of ARAF over CRAF.
- To identify the transcription factor mediating Gα12-induced RFFL expression.
- To determine the broader role of the RFFL-mediated pathway in cell migration.
Main Methods:
- Site-directed mutagenesis of Gα12 and ARAF.
- Analysis of protein-protein interactions and kinase activity assays.
- Reporter gene assays to measure RFFL transcription and Western blotting for protein expression.
Main Results:
- Gα12 residue Arg-264 is critical for ARAF interaction and activation; mutation to Gln abrogates this.
- Gα12 activates ARAF but not CRAF, unlike Gα13.
- The Gα12-ARAF-ERK pathway stimulates RFFL transcription via the transcription factor c-Myc.
- EGF and BRAF signaling also induce PKC activation and cell migration through RFFL upregulation.
Conclusions:
- Gα12 employs a unique mechanism to activate ARAF, distinct from CRAF activation.
- The transcription factor c-Myc mediates Gα12-driven RFFL expression.
- RFFL plays a significant, conserved role in regulating cell migration across different signaling pathways.
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