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Reconstitution Of β-catenin Degradation In Xenopus Egg Extract
Published on: June 17, 2014
Dishevelled interacts with the DIX domain polymerization interface of Axin to interfere with its function in
Marc Fiedler1, Carolina Mendoza-Topaz, Trevor J Rutherford
1Medical Research Council Laboratory of Molecular Biology, Cambridge CB2 0QH, United Kingdom.
Abstract:
Wnt/β-catenin signaling controls numerous steps in normal animal development and can also cause cancer if inappropriately activated. In the absence of Wnt, β-catenin is targeted continuously for proteasomal degradation by the Axin destruction complex, whose activity is blocked upon Wnt stimulation by Dishevelled, which recruits Axin to the plasma membrane and assembles it into a signalosome. This key event during Wnt signal transduction depends on dynamic head-to-tail polymerization by the DIX domain of Dishevelled. Here, we use rescue assays in Drosophila tissues and functional assays in human cells to show that polymerization-blocking mutations in the DIX domain of Axin disable its effector function in down-regulating Armadillo/β-catenin and its response to Dishevelled during Wnt signaling. Intriguingly, NMR spectroscopy revealed that the purified DIX domains of the two proteins interact with each other directly through their polymerization interfaces, whereby the same residues mediate both homo- and heterotypic interactions. This result implies that Dishevelled has the potential to act as a "natural" dominant-negative, binding to the polymerization interface of Axin's DIX domain to interfere with its self-assembly, thereby blocking its effector function.
Insights
Dishevelled protein binding to Axin
Area of Science:
- Molecular Biology
- Cell Signaling
- Developmental Biology
Background:
- Wnt/β-catenin signaling is crucial for animal development and cancer.
- Axin destruction complex regulates β-catenin levels.
- Dishevelled protein blocks Axin complex activity upon Wnt stimulation.
Purpose of the Study:
- Investigate the role of Dishevelled-Axin interactions in Wnt signaling.
- Determine how Dishevelled binding affects Axin polymerization and function.
- Elucidate the mechanism by which Dishevelled inhibits Axin.
Main Methods:
- Rescue assays in Drosophila tissues.
- Functional assays in human cells.
- Nuclear Magnetic Resonance (NMR) spectroscopy.
Main Results:
- Polymerization-blocking mutations in Axin's DIX domain impair its function.
- Dishevelled directly interacts with Axin's DIX domain at the polymerization interface.
- The same residues mediate both homo- and heterotypic interactions for Dishevelled and Axin.
Conclusions:
- Dishevelled binding to Axin's DIX domain inhibits Axin self-assembly and effector function.
- Dishevelled acts as a dominant-negative regulator by interfering with Axin polymerization.
- This interaction is a key mechanism in Wnt signal transduction regulation.
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