Department of Urology, Research Laboratories, University of Leipzig, 04109 Leipzig, Germany.
Int J Mol Sci. 2021 Nov 8;22(21):12057. doi: 10.3390/ijms222112057.
The differential activation of Wnt pathways (canonical: Wnt/β-catenin; non-canonical: planar cell polarity (PCP), Wnt/Ca) depends on the cell-specific availability and regulation of Wnt receptors, called Frizzled (FZD). FZDs selectively recruit co-receptors to activate various downstream effectors. We established a proximity ligation assay (PLA) for the detection of endogenous FZD-co-receptor interactions and analyzed time-dependent Wnt pathway activation in cultured cells. Prostate cancer cells (PC-3) stimulated by Wnt ligands (Wnt5A, Wnt10B) were analyzed by Cy3-PLA for the co-localization of FZD6 and co-receptors (canonical: LRP6, non-canonical: ROR1) at the single-cell level. Downstream effector activation was assayed by immunocytochemistry. PLA allowed the specific (siRNA-verified) detection of FZD6-LRP6 and FZD6-ROR1 complexes as highly fluorescent spots. Incubation with Wnt10B led to increased FZD6-LRP6 interactions after 2 to 4 min and resulted in nuclear accumulation of β-catenin within 5 min. Wnt5A stimulation resulted in a higher number of FZD6-ROR1 complexes after 2 min. Elevated levels of phosphorylated myosin phosphatase target 1 suggested subsequent Wnt/PCP activation in PC-3. This is the first study demonstrating time-dependent interactions of endogenous Wnt (co-)receptors followed by rapid Wnt/β-catenin and Wnt/PCP activation in PC-3. In conclusion, the PLA could uncover novel signatures of Wnt receptor activation in mammalian cells and may provide new insights into involved signaling routes.
Wnt 通路(经典:Wnt/β-catenin;非经典:平面细胞极性(PCP),Wnt/Ca)的差异激活取决于 Wnt 受体(称为卷曲蛋白(FZD))的细胞特异性可用性和调节。FZDs 选择性招募共受体以激活各种下游效应器。我们建立了一种用于检测内源性 FZD-共受体相互作用的邻近连接分析(PLA),并分析了培养细胞中时间依赖性 Wnt 通路激活。通过 Cy3-PLA 分析 Wnt 配体(Wnt5A、Wnt10B)刺激的前列腺癌细胞(PC-3),在单细胞水平上共定位 FZD6 和共受体(经典:LRP6,非经典:ROR1)。通过免疫细胞化学测定下游效应物的激活。PLA 允许特异性(siRNA 验证)检测 FZD6-LRP6 和 FZD6-ROR1 复合物作为高度荧光斑点。孵育 Wnt10B 导致 2 至 4 分钟后 FZD6-LRP6 相互作用增加,并导致 5 分钟内β-catenin 核内积累。Wnt5A 刺激导致 2 分钟后 FZD6-ROR1 复合物数量增加。磷酸化肌球蛋白磷酸酶靶 1 水平升高表明随后在 PC-3 中激活了 Wnt/PCP。这是第一项研究,证明了内源性 Wnt(共)受体的时间依赖性相互作用,随后在 PC-3 中迅速激活 Wnt/β-catenin 和 Wnt/PCP。总之,PLA 可以揭示哺乳动物细胞中 Wnt 受体激活的新特征,并可能为相关信号通路提供新的见解。