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A protein knockdown strategy to study the function of β-catenin in tumorigenesis

机译:蛋白质敲低策略研究β-catenin在肿瘤发生中的功能

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Background The Wnt signaling pathway plays critical roles in cell proliferation and cell fate determination at many stages of development. A critical downstream target of Wnt signaling is the cytosolic β-catenin, which is stabilized upon Wnt activation and promotes transcription of a variety of target genes including c-myc and cyclin D. Aberrant Wnt signaling, which results from mutations of either β-catenin or adenomatous polyposis coli (APC), renders β-catenin resistant to degradation, and has been associated with multiple types of human cancers. Results A protein knockdown strategy was designed to reduce the cytosolic β-catenin levels through accelerating its turnover rate. By engineering a chimeric protein with the β-catenin binding domain of E-cadherin fused to βTrCP ubiquitin-protein ligase, the stable β-catenin mutant was recruited to the cellular SCF ( S kp1, C ullin 1, and F -box-containing substrate receptor) ubiquitination machinery for ubiquitination and degradation. The DLD1 colon cancer cells express wild type β-catenin at abnormally high levels due to loss of APC. Remarkably, conditional expression of βTrCP-E-cadherin under the control of a tetracycline-repressive promoter in DLD1 cells selectively knocked down the cytosolic, but not membrane-associated subpopulation of β-catenin. As a result, DLD1 cells were impaired in their growth and clonogenic ability in vitro, and lost their tumorigenic potential in nude mice. Conclusion We have designed a novel approach to induce degradation of stabilized/mutated β-catenin. Our results suggest that a high concentration of cytoplasmic β-catenin is critical for the growth of colorectal tumor cells. The protein knockdown strategy can be utilized not only as a novel method to dissect the role of oncoproteins in tumorigenesis, but also as a unique tool to delineate the function of a subpopulation of proteins localized to a specific subcellular compartment.
机译:背景技术Wnt信号通路在发育的许多阶段在细胞增殖和细胞命运确定中起着关键作用。 Wnt信号的关键下游靶标是胞质β-catenin,它在Wnt激活后稳定并促进包括c-myc和cyclin D在内的多种靶基因的转录。Wnt信号异常是由β-catenin突变引起的或腺瘤性息肉病(APC),使β-连环蛋白具有抗降解性,并已与多种类型的人类癌症相关。结果设计了一种蛋白敲低策略,通过加速其周转率来降低胞浆中的β-catenin水平。通过工程改造具有E-钙粘着蛋白的β-catenin结合结构域与βTrCP泛素蛋白连接酶融合的嵌合蛋白,稳定的β-catenin突变体被募集到细胞SCF中(S kp1,C ullin 1和F -box底物受体)泛素化机制,用于泛素化和降解。由于APC缺失,DLD1结肠癌细胞以异常高的水平表达野生型β-catenin。值得注意的是,在DLD1细胞中,在四环素抑制性启动子的控制下,βTrCP-E-钙黏着蛋白的条件表达选择性地敲除了胞质,但没有敲除膜相关的β-catenin亚群。结果,在体外DLD1细胞的生长和克隆形成能力受到损害,并且在裸鼠中丧失了其致瘤潜力。结论我们设计了一种诱导稳定/突变的β-catenin降解的新方法。我们的结果表明,高浓度的胞质β-catenin对于结直肠肿瘤细胞的生长至关重要。蛋白质敲低策略不仅可以用作剖析癌蛋白在肿瘤发生中的作用的新方法,而且还可以作为描绘特定亚细胞区隔的蛋白质亚群功能的独特工具。

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