bioRxiv · 10.1101/2024.12.10.626710
Wnt target IQGAP3 promotes Wnt signaling via disrupting Axin1-CK1α interaction.
Abstract
The scaffold protein IQGAP3 is highly upregulated in most epithelial cancers. While recent studies have highlighted its pivotal roles in cancer cell proliferation and metastasis, a deeper mechanistic understanding of IQGAP3 is currently lacking. We have here used TurboID to map IQGAP3 proximity partners and identified the Wnt signaling members Axin1 and CK1 as IQGAP3-interacting proteins. Our functional studies demonstrated that overexpression of IQGAP3 increases {beta}-catenin levels, while IQGAP3 depletion reduces {beta}-catenin levels in gastric cancer cells. Mechanistically, IQGAP3 disrupts Axin1-CK1 interaction, thereby inhibiting {beta}-catenin phosphorylation and ultimately leading to its accumulation. Importantly, we discovered that IQGAP3 itself is regulated by Wnt signaling, suggesting its involvement in a positive feedback loop in Wnt/{beta}-catenin signaling through interactions with Axin1 and CK1. These findings identify IQGAP3 as a novel mediator of {beta}-catenin stabilization and underscore its potential as a target for cancer therapy.
Source connections
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rahmat, M. B., Hussain, A., Teh, Y. X., Dutta, B., Pundrik, S., Kappei, D., Ito, Y.. 2024-12-11. Wnt target IQGAP3 promotes Wnt signaling via disrupting Axin1-CK1α interaction.. https://doi.org/10.1101/2024.12.10.626710
Cite the original work for its findings. Save a collection to share your selection of sources.