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Feature ArticleFrom the Cover: An RNAi-based chemical genetic screen identifies three small-molecule inhibitors of the Wnt/wingless signaling pathway

机译:专题文章从封面开始:基于RNAi的化学遗传筛选可识别Wnt /无翼信号通路的三种小分子抑制剂

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摘要

Misregulated β-catenin responsive transcription (CRT) has been implicated in the genesis of various malignancies, including colorectal carcinomas, and it is a key therapeutic target in combating various cancers. Despite significant effort, successful clinical implementation of CRT inhibitory therapeutics remains a challenging goal. This is, in part, because of the challenge of identifying inhibitory compounds that specifically modulate the nuclear transcriptional activity of β-catenin while not affecting its cytoskeletal function in stabilizing adherens junctions at the cell membrane. Here, we report an RNAi-based modifier screening strategy for the identification of CRT inhibitors. Our data provide support for the specificity of these inhibitory compounds in antagonizing the transcriptional function of nuclear β-catenin. We show that these inhibitors efficiently block Wnt/β-catenin–induced target genes and phenotypes in various mammalian and cancer cell lines. Importantly, these Wnt inhibitors are specifically cytotoxic to human colon tumor biopsy cultures as well as colon cancer cell lines that exhibit deregulated Wnt signaling.
机译:β-catenin反应性转录(CRT)失控已牵涉到包括结肠直肠癌在内的各种恶性肿瘤的发生,它是对抗各种癌症的关键治疗靶标。尽管付出了巨大的努力,但成功地在临床上实施CRT抑制疗法仍然是一个具有挑战性的目标。部分原因是因为要鉴定特异性调节β-catenin核转录活性而又不影响其在稳定细胞膜黏附连接处的细胞骨架功能的抑制性化合物的挑战。在这里,我们报告基于CRT抑制剂的识别基于RNAi的修饰剂筛选策略。我们的数据为这些抑制化合物在拮抗核β-catenin转录功能方面的特异性提供了支持。我们证明了这些抑制剂有效地阻断了Wnt /β-catenin诱导的各种哺乳动物和癌细胞系中的靶基因和表型。重要的是,这些Wnt抑制剂对人结肠肿瘤活检培养物以及表现出失调的Wnt信号转导的结肠癌细胞系具有特异性细胞毒性。

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