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A novel role for the tumour suppressor Nitrilase1 modulating the Wnt/β-catenin signalling pathway

机译:抑癌酶Nitrilase1调节Wnt /β-catenin信号通路的新作用

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Nitrilase1 was classified as a tumour suppressor in association with the fragile histidine-triad protein Fhit. However, knowledge about nitrilase1 and its tumour suppressor function is still limited. Whereas nitrilase1 and Fhit are discrete proteins in mammals, they are merged in Drosophila melanogaster and Caenorhabditis elegans . According to the Rosetta-Stone hypothesis, proteins encoded as fusion proteins in one organism and as separate proteins in another organism may act in the same signalling pathway. Although a direct interaction of human nitrilase1 and Fhit has not been shown, our previous finding that Fhit interacts with β-catenin and represses its transcriptional activity in the canonical Wnt pathway suggested that human nitrilase1 also modulates Wnt signalling. In fact, human nitrilase1 forms a complex with β-catenin and LEF-1/TCF-4, represses β-catenin-mediated transcription and shows an additive effect together with Fhit. Knockdown of human nitrilase1 enhances Wnt target gene expression. Moreover, our experiments show that β-catenin competes away human nitrilase1 from LEF-1/TCF and thereby contributes to the activation of Wnt-target gene transcription. Inhibitory activity of human nitrilase1 on vertebrate Wnt signalling was confirmed by repression of Wnt-induced double axis formation in Xenopus embryogenesis. In line with this finding, the Drosophila fusion protein Drosophila NitFhit directly binds to Armadillo and represses the Wingless pathway in reporter gene assays. Genetic experiments confirmed the repressive activity of Drosophila NitFhit on Wingless signalling in the Drosophila wing imaginal disc. In addition, colorectal tumour microarray analysis revealed a significantly reduced expression of human nitrilase1 in poorly differentiated tumours. Taken together, repression of the canonical Wnt pathway represents a new mechanism for the human nitrilase1 tumour suppressor function.
机译:Nitrilase1与易碎的组氨酸三联体蛋白Fhit一起被归类为肿瘤抑制因子。但是,关于腈水解酶1及其肿瘤抑制功能的知识仍然有限。尽管腈水解酶1和Fhit是哺乳动物中的离散蛋白,但它们在果蝇(Drosophila melanogaster)和秀丽隐杆线虫(Caenorhabditis elegans)中融合。根据Rosetta-Stone假设,在一个生物中编码为融合蛋白而在另一生物中编码为单独蛋白的蛋白可能在同一信号通路中起作用。尽管尚未显示人腈水解酶1与Fhit的直接相互作用,但我们先前的发现表明,Fhit与β-catenin相互作用并抑制其在经典Wnt途径中的转录活性,这表明人腈水解酶1也调节了Wnt信号传导。实际上,人腈水解酶1与β-catenin和LEF-1 / TCF-4形成复合物,抑制β-catenin介导的转录,并与Fhit表现出加和作用。抑制人类腈水解酶1增强Wnt目标基因表达。此外,我们的实验表明,β-连环蛋白与LEF-1 / TCF中的人腈水解酶竞争,从而有助于Wnt靶基因转录的激活。通过抑制非洲爪蟾胚胎发生中Wnt诱导的双轴形成,证实了人腈水解酶1对脊椎动物Wnt信号的抑制活性。与该发现一致,果蝇融合蛋白果蝇NitFhit直接与犰狳结合,并抑制了记者基因检测中的无翼途径。遗传实验证实了果蝇NitFhit对果蝇翅假想盘中无翼信号的抑制活性。此外,结肠直肠肿瘤微阵列分析显示,在分化不良的肿瘤中,人类腈水解酶1的表达显着降低。两者合计,规范的Wnt通路的压制代表人类腈水解酶1肿瘤抑制功能的新机制。

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