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Updated: Aug 18, 2026

Modeling Paracrine Noncanonical Wnt Signaling In Vitro
Published on: December 10, 2021
The mechanism of endogenous receptor activation functionally distinguishes prototype canonical and noncanonical Wnts
Guizhong Liu1, Anna Bafico, Stuart A Aaronson
1Department of Oncological Sciences, Mount Sinai School of Medicine, Box 1130, One Gustave L. Levy Place, New York, NY 10029, USA.
Abstract:
Wnt glycoproteins are developmentally essential signaling molecules, and lesions afflicting Wnt pathways play important roles in human diseases. Some Wnts signal to the canonical pathway by stabilizing beta-catenin, while others lack this activity. Frizzled serpentine receptors mediate distinct signaling pathways by both classes of Wnts. Here, we tandemly linked noncanonical Wnt5a with the C-terminal half of Dickkopf-2 (Dkk2C), a distinct ligand of the Wnt coreceptor LRP5/6. Whereas Wnt5a, Dkk2C, or both together were incapable of stimulating endogenous canonical signaling, the Wnt5a/Dkk2C chimera efficiently activated this pathway in a manner inhibitable by specific antagonists of either frizzled or LRP receptors. Thus, activation of the canonical pathway requires ligand coupling of an endogenous frizzled/LRP coreceptor complex, rather than Wnt triggering each receptor independently. Moreover, fusion of Wnt5a with Dkk2C unmasked its ability to signal to Dishevelled through multiple frizzleds, indicating that the lack of functional interaction with LRP distinguishes noncanonical Wnt5a from canonical Wnts in mammalian cells. These findings provide a novel mechanism by which the same receptor can be switched between distinct signaling pathways depending on the differential recruitment of a coreceptor by members of the same ligand family.
Insights
Wnt5a fused with Dickkopf-2 (Dkk2C) activates the canonical Wnt pathway by engaging both Frizzled and LRP receptors. This reveals a novel mechanism for switching signaling pathways via differential coreceptor recruitment.
Area of Science:
- Molecular Biology
- Cell Signaling
- Developmental Biology
Background:
- Wnt glycoproteins are crucial signaling molecules in development and disease.
- Wnt pathways can signal through canonical (beta-catenin stabilizing) or noncanonical routes.
- Frizzled receptors mediate distinct Wnt signaling pathways.
Purpose of the Study:
- To investigate how Wnt ligands engage Frizzled and LRP coreceptors.
- To explore the signaling potential of a Wnt5a/Dkk2C chimera.
- To elucidate the mechanism of canonical Wnt pathway activation.
Main Methods:
- Constructing a Wnt5a/Dkk2C chimera.
- Assessing canonical signaling activation in mammalian cells.
- Utilizing specific antagonists for Frizzled and LRP receptors.
Main Results:
- The Wnt5a/Dkk2C chimera efficiently activated canonical signaling.
- Activation was dependent on the simultaneous engagement of Frizzled and LRP receptors.
- Wnt5a alone or Dkk2C alone did not activate canonical signaling.
- Wnt5a/Dkk2C chimera also signaled through Dishevelled, indicating unmasked noncanonical activity.
Conclusions:
- Canonical Wnt pathway activation requires coordinated ligand-receptor complex formation with Frizzled and LRP.
- Differential coreceptor recruitment by Wnt ligands dictates pathway choice.
- This provides a new mechanism for pathway switching within the Wnt signaling family.
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