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Published on: December 23, 2010
beta-Arrestin1 modulates lymphoid enhancer factor transcriptional activity through interaction with phosphorylated
1Department of Medicine, Howard Hughes Medical Institute, Duke University Medical Center, Box 3821, Durham, NC 27710, USA.
Abstract:
One aspect of the function of the beta-arrestins is to serve as scaffold or adapter molecules coupling G-protein coupled receptors (GPCRs) to signal transduction pathways distinct from traditional second messenger pathways. Here we report the identification of Dishevelled 1 and Dishevelled 2 (Dvl1 and Dvl2) as beta-arrestin1 (betaarr1) interacting proteins. Dvl proteins participate as key intermediates in signal transmission from the seven membrane-spanning Frizzled receptors leading to inhibition of glycogen synthase kinase-3beta (GSK-3beta), stabilization of beta-catenin, and activation of the lymphoid enhancer factor (LEF) transcription factor. We find that phosphorylation of Dvl strongly enhances its interaction with betaarr1, suggesting that regulation of Dvl phosphorylation and subsequent interaction with betaarr1 may play a key role in the activation of the LEF transcription pathway. Because coexpression of the Dvl kinases, CK1epsilon and PAR-1, with Dvl synergistically activates LEF reporter gene activity, we reasoned that coexpression of betaarr1 with Dvl might also affect LEF-dependent gene activation. Interestingly, whereas betaarr1 or Dvl alone leads to low-level stimulation of LEF (2- to 5-fold), coexpression of betaarr1 with either Dvl1 or Dvl2 leads to a synergistic activation of LEF (up to 16-fold). Additional experiments with LiCl as an inhibitor of GSK-3beta kinase activity indicate that the step affected by betaarr1 is upstream of GSK-3beta and most likely at the level of Dvl. These results identify betaarr1 as a regulator of Dvl-dependent LEF transcription and suggest that betaarr1 might serve as an adapter molecule that can couple Frizzled receptors and perhaps other GPCRs to these important transcription pathways.
Insights
Beta-arrestin1 (betaarr1) interacts with Dishevelled (Dvl) proteins, acting as a scaffold to regulate lymphoid enhancer factor (LEF) transcription. This interaction, enhanced by Dvl phosphorylation, synergistically activates LEF-dependent gene expression upstream of GSK-3beta.
Area of Science:
- Cellular signaling
- Molecular biology
- Biochemistry
Background:
- Beta-arrestins (betaarr) function as adapter molecules linking G-protein coupled receptors (GPCRs) to distinct signal transduction pathways.
- Dishevelled (Dvl) proteins are key intermediates in signaling from Frizzled receptors, influencing glycogen synthase kinase-3beta (GSK-3beta), beta-catenin, and lymphoid enhancer factor (LEF) transcription.
Purpose of the Study:
- To identify novel beta-arrestin interacting proteins.
- To investigate the role of beta-arrestin1 (betaarr1) in Dishevelled (Dvl)-mediated signaling and lymphoid enhancer factor (LEF) transcription activation.
Main Methods:
- Co-immunoprecipitation to identify interacting proteins.
- Reporter gene assays to measure LEF transcriptional activity.
- Western blotting to assess protein phosphorylation.
- Pharmacological inhibition of GSK-3beta.
Main Results:
- Dishevelled 1 and 2 (Dvl1 and Dvl2) were identified as novel beta-arrestin1 (betaarr1) interacting proteins.
- Dvl phosphorylation enhances its interaction with betaarr1.
- Coexpression of betaarr1 with Dvl1 or Dvl2 synergistically activates LEF-dependent transcription up to 16-fold.
- Betaarr1 acts upstream of GSK-3beta, likely at the level of Dvl, in the LEF activation pathway.
Conclusions:
- Beta-arrestin1 (betaarr1) functions as a regulator of Dvl-dependent LEF transcription.
- Betaarr1 may serve as an adapter molecule coupling Frizzled receptors and potentially other GPCRs to LEF transcription pathways.
- Dvl phosphorylation is a key regulatory step for betaarr1 interaction and subsequent LEF pathway activation.
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