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首页> 外文期刊>Oncogene >Blocking Wnt signaling by SFRP-like molecules inhibits in vivo cell proliferation and tumor growth in cells carrying active β-catenin
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Blocking Wnt signaling by SFRP-like molecules inhibits in vivo cell proliferation and tumor growth in cells carrying active β-catenin

机译:SFRP样分子阻断Wnt信号传导可抑制体内具有活性β-catenin的细胞增殖和肿瘤生长

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Constitutive activation of Wnt/尾-catenin signaling in cancer results from mutations in pathway components, which frequently coexist with autocrine Wnt signaling or epigenetic silencing of extracellular Wnt antagonists. Among the extracellular Wnt inhibitors, the secreted frizzled-related proteins (SFRPs) are decoy receptors that contain soluble Wnt-binding frizzled domains. In addition to SFRPs, other endogenous molecules harboring frizzled motifs bind to and inhibit Wnt signaling. One of such molecules is V3Nter, a soluble SFRP-like frizzled polypeptide that binds to Wnt3a and inhibits Wnt signaling and expression of the 尾-catenin target genes cyclin D1 and c-myc . V3Nter is derived from the cell surface extracellular matrix component collagen XVIII. Here, we used HCT116 human colon cancer cells carrying the 螖S45 activating mutation in one of the alleles of 尾-catenin to show that V3Nter and SFRP-1 decrease baseline and Wnt3a-induced 尾-catenin stabilization. Consequently, V3Nter reduces the growth of human colorectal cancer xenografts by specifically controlling cell proliferation and cell cycle progression, without affecting angiogenesis or apoptosis, as shown by decreased [~(3)H]-thymidine (in vitro ) or BrdU (in vivo ) incorporation, clonogenesis assays, cell cycle analysis and magnetic resonance imaging in living mice. Additionally, V3Nter switches off the 尾-catenin target gene expression signature in vivo . Moreover, experiments with 尾-catenin allele-targeted cells showed that the 螖S45 尾-catenin allele hampers, but does not abrogate, inhibition of Wnt signaling by SFRP-1 or by the SFRP-like frizzled domain. Finally, neither SFRP-1 nor V3Nter affect 尾-catenin signaling in SW480 cells carrying nonfunctional Adenomatous polyposis coli . Thus, SFRP-1 and the SFRP-like molecule V3Nter can inhibit tumor growth of 尾-catenin-activated tumor cells in vivo .
机译:癌症中Wnt /β-catenin信号的组成性激活是由途径组分的突变引起的,该突变通常与自分泌Wnt信号或细胞外Wnt拮抗剂的表观遗传沉默共存。在细胞外Wnt抑制剂中,分泌的卷曲相关蛋白(SFRPs)是诱饵受体,包含可溶性Wnt结合卷曲结构域。除SFRP外,其他具有卷曲基序的内源性分子会结合并抑制Wnt信号传导。这种分子之一是V3Nter,它是一种可溶的SFRP样卷曲多肽,与Wnt3a结合并抑制Wnt信号传导和β-catenin靶基因cyclin D1和c-myc的表达。 V3Nter源自细胞表面细胞外基质组分胶原蛋白XVIII。在这里,我们使用了在β-catenin等位基因之一中带有螖S45激活突变的HCT116人结肠癌细胞,以显示V3Nter和SFRP-1降低基线和Wnt3a诱导的β-catenin稳定。因此,V3Nter通过特异性控制细胞增殖和细胞周期进程而不影响血管生成或凋亡来减少人结肠直肠癌异种移植物的生长,如[〜(3)H]-胸苷(体外)或BrdU(活体内小鼠体内结合,克隆形成测定,细胞周期分析和磁共振成像。另外,V3Nter在体内关闭了β-连环蛋白靶基因表达标记。此外,以β-连环蛋白等位基因为靶标的细胞的实验表明,螖S45β-连环蛋白等位基因阻碍但不消除SFRP-1或SFRP样卷曲结构域对Wnt信号的抑制。最后,在携带无功能性腺瘤性息肉病大肠杆菌的SW480细胞中,SFRP-1和V3Nter均不影响β-连环蛋白信号传导。因此,SFRP-1和SFRP样分子V3Nter可以在体内抑制β-连环蛋白活化的肿瘤细胞的肿瘤生长。

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