Wnt signal transduction relies on the direct inhibition of GSK3 by phosphorylated PPPSPxS motifs within the cytoplasmic tail of the LRP6 co-receptor. How GSK3 is recruited to LRP6 remains unclear. Here, we use nuclear magnetic resonance spectroscopy to identify the membrane-proximal PPPSPxS motif and its flanking sequences as the primary binding site for both Axin and GSK3, and an intrinsically disordered segment of Axin as its LRP6-interacting region (LIR). Co-immunoprecipitation and CRISPR-engineered mutations in endogenous Axin indicate that its docking at LRP6 is antagonized by a phospho-dependent foldback within LIR and by a PRTxR motif that allows Axin and GSK3 to form a multi-pronged interaction which favors their detachment from LRP6. Crucially, signaling by LRP6 also depends on its binding to the AP2 clathrin adaptor. We propose that the Wnt-driven clustering of LRP6 within clathrin-coated locales allows the Axin-GSK complex to dock at adjacent LRP6 molecules, while also exposing it to co-targeted kinases that change its activity in Wnt signal transduction.
Wnt signalosome assembly is governed by conformational flexibility of Axin and by the AP2 clathrin adaptor.
Wnt信号体的组装受Axin的构象灵活性和AP2网格蛋白衔接蛋白的控制
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作者:Gammons Melissa V, Franco-EchevarrÃa Elsa, Li Tie-Mei, Rutherford Trevor J, Renko Miha, Batters Christopher, Bienz Mariann
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 May 21; 16(1):4718 |
| doi: | 10.1038/s41467-025-59984-9 | 研究方向: | 信号转导 |
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