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Inhibition of Wnt/β-Catenin Signaling by a Soluble Collagen-Derived Frizzled Domain Interacting with Wnt3a and the Receptors Frizzled 1 and 8

机译:可溶性胶原衍生的毛躁域与Wnt3a和受体毛躁的1和8相互作用抑制Wnt /β-连环蛋白信号传导。

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摘要

The Wnt/β-catenin pathway controls cell proliferation, death and differentiation. Several families of extracellular proteins can antagonize Wnt/β-catenin signaling, including the decoy receptors known as secreted frizzled related proteins (SFRPs), which have a cysteine-rich domain (CRD) structurally similar to the extracellular Wnt-binding domain of the frizzled receptors. SFRPs inhibit Wnt signaling by sequestering Wnts through the CRD or by forming inactive complexes with the frizzled receptors. Other endogenous molecules carrying frizzled CRDs inhibit Wnt signaling, such as V3Nter, which is proteolytically derived from the cell surface component collagen XVIII and contains a biologically active frizzled domain (FZC18) inhibiting in vivo cell proliferation and tumor growth in mice. We recently showed that FZC18 expressing cells deliver short-range signals to neighboring cells, decreasing their proliferation in vitro and in vivo through the Wnt/β-catenin signaling pathway. Here, using low concentrations of soluble FZC18 and Wnt3a, we show that they physically interact in a cell-free system. In addition, soluble FZC18 binds the frizzled 1 and 8 receptors' CRDs, reducing cell sensitivity to Wnt3a. Conversely, inhibition of Wnt/β-catenin signaling was partially rescued by the expression of full-length frizzled 1 and 8 receptors, but enhanced by the expression of a chimeric cell-membrane-tethered frizzled 8 CRD. Moreover, soluble, partially purified recombinant FZC18_CRD inhibited Wnt3a-induced β-catenin activation. Taken together, the data indicate that collagen XVIII-derived frizzled CRD shifts Wnt sensitivity of normal cells to a lower pitch and controls their growth.
机译:Wnt /β-catenin途径控制细胞增殖,死亡和分化。胞外蛋白的几个家族可以拮抗Wnt /β-catenin信号传导,包括被称为分泌性卷曲相关蛋白(SFRP)的诱饵受体,其结构上与卷曲蛋白的胞外Wnt结合结构域相似,具有富含半胱氨酸的结构域(CRD)受体。 SFRP通过通过CRD隔离Wnt或与卷曲的受体形成非活性复合物来抑制Wnt信号传导。带有卷曲CRD的其他内源性分子抑制Wnt信号传导,例如V3Nter,它是蛋白水解地来自细胞表面成分胶原XVIII,并包含具有生物学活性的卷曲结构域(FZC18),可抑制小鼠体内的细胞增殖和肿瘤生长。我们最近发现,表达FZC18的细胞将短距离信号传递给邻近细胞,从而通过Wnt /β-catenin信号传导途径在体内和体外降低其增殖。在这里,我们使用低浓度的可溶性FZC18和Wnt3a,表明它们在无细胞系统中发生物理相互作用。此外,可溶性FZC18结合卷曲的1和8受体的CRD,降低了细胞对Wnt3a的敏感性。相反,Wnt /β-catenin信号转导的抑制通过全长卷曲的1和8受体的表达得以部分挽救,但是通过嵌合的细胞膜束缚的卷曲的8 CRD的表达得以增强。此外,可溶的,部分纯化的重组FZC18_CRD抑制Wnt3a诱导的β-catenin活化。两者合计,数据表明胶原蛋白XVIII派生的卷曲CRD将正常细胞的Wnt敏感性转移至较低的间距,并控制其生长。

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