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PI(4,5)P 刺激的正反馈驱动 Dishevelled 在 Wnt-β-catenin 信号中招募 Frizzled。

PI(4,5)P-stimulated positive feedback drives the recruitment of Dishevelled to Frizzled in Wnt-β-catenin signaling.

机构信息

Departments of Structural Biology and Molecular and Cellular Physiology, Stanford University School of Medicine, Stanford, CA 94035, USA.

出版信息

Sci Signal. 2022 Aug 23;15(748):eabo2820. doi: 10.1126/scisignal.abo2820.

Abstract

In the Wnt-β-catenin pathway, Wnt binding to Frizzled (Fzd) and LRP5 or LRP6 (LRP5/6) co-receptors inhibits the degradation of the transcriptional coactivator β-catenin by recruiting the cytosolic effector Dishevelled (Dvl). Polymerization of Dvl at the plasma membrane recruits the β-catenin destruction complex, enabling the phosphorylation of LRP5/6, a key step in inhibiting β-catenin degradation. Using purified Fzd proteins reconstituted in lipid nanodiscs, we investigated the factors that promote the recruitment of Dvl to the plasma membrane. We found that the affinity of Fzd for Dvl was not affected by Wnt ligands, in contrast to other members of the GPCR superfamily for which the binding of extracellular ligands affects the affinity for downstream transducers. Instead, Fzd-Dvl binding was enhanced by increased concentration of the lipid PI(4,5)P, which is generated by Dvl-associated lipid kinases in response to Wnt and which is required for LRP5/6 phosphorylation. Moreover, binding to Fzd did not promote Dvl DEP domain dimerization, which has been proposed to be required for signaling downstream of Fzd. Our findings suggest a positive feedback loop in which Wnt-stimulated local PI(4,5)P production enhances Dvl recruitment and further PI(4,5)P production to support Dvl polymerization, LRP5/6 phosphorylation, and β-catenin stabilization.

摘要

在 Wnt-β-catenin 信号通路中,Wnt 与 Frizzled(Fzd)和 LRP5 或 LRP6(LRP5/6)共受体结合会抑制转录共激活因子β-catenin 的降解,其方式是招募胞质效应物 Dishevelled(Dvl)。Dvl 在质膜上的聚合会募集β-catenin 降解复合物,使 LRP5/6 磷酸化,这是抑制β-catenin 降解的关键步骤。使用在脂质纳米盘中重建的纯化 Fzd 蛋白,我们研究了促进 Dvl 向质膜募集的因素。我们发现,Fzd 与 Dvl 的亲和力不受 Wnt 配体的影响,这与 GPCR 超家族的其他成员不同,后者的细胞外配体结合会影响其对下游转导物的亲和力。相反,Fzd-Dvl 结合通过增加脂质 PI(4,5)P 的浓度得到增强,PI(4,5)P 是由 Dvl 相关的脂质激酶响应 Wnt 产生的,是 LRP5/6 磷酸化所必需的。此外,与 Fzd 的结合不会促进 Dvl 的 DEP 结构域二聚化,该二聚化被提议是 Fzd 下游信号传导所必需的。我们的研究结果表明存在正反馈回路,其中 Wnt 刺激的局部 PI(4,5)P 产生增强了 Dvl 的募集,并进一步产生 PI(4,5)P 以支持 Dvl 的聚合、LRP5/6 的磷酸化和β-catenin 的稳定。

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