Cancer Genetics and Stem Cell Group, Cancer Biology, Division of Cancer and Stem Cells, School of Medicine, University of Nottingham, Nottingham, United Kingdom.
Division of Experimental Haematology and Cancer Biology, Cincinnati Children's Hospital Medical Centre, Cincinnati, Ohio.
Mol Cancer Res. 2018 Dec;16(12):1977-1990. doi: 10.1158/1541-7786.MCR-18-0262. Epub 2018 Aug 10.
Wnt/β-catenin signaling plays a critical role during development of both normal and malignant colorectal cancer tissues. Phosphorylation of β-catenin protein alters its trafficking and function. Such conventional allosteric regulation usually involves a highly specialized set of molecular interactions, which may specifically turn on a particular cell phenotype. This study identifies a novel transcription modulator with an FLYWCH/Zn-finger DNA-binding domain, called "FLYWCH1." Using a modified yeast-2-hybrid based Ras-Recruitment system, it is demonstrated that FLYWCH1 directly binds to unphosphorylated (nuclear) β-catenin efficiently suppressing the transcriptional activity of Wnt/β-catenin signaling that cannot be rescued by TCF4. FLYWCH1 rearranges the transcriptional activity of β-catenin/TCF4 to selectively block the expression of specific downstream genes associated with colorectal cancer cell migration and morphology, including ZEB1, EPHA4, and E-cadherin. Accordingly, overexpression of FLYWCH1 reduces cell motility and increases cell attachment. The expression of FLYWCH1 negatively correlates with the expression level of ZEB1 and EPHA4 in normal versus primary and metastatic colorectal cancer tissues in patients. Thus, FLYWCH1 antagonizes β-catenin/TCF4 signaling during cell polarity/migration in colorectal cancer. IMPLICATIONS: This study uncovers a new molecular mechanism by which FLYWCH1 with a possible tumor suppressive role represses β-catenin-induced ZEB1 and increases cadherin-mediated cell attachment preventing colorectal cancer metastasis.
Wnt/β-catenin 信号通路在正常和恶性结直肠组织的发育中起着至关重要的作用。β-catenin 蛋白的磷酸化改变了其运输和功能。这种传统的变构调节通常涉及一组高度专业化的分子相互作用,这些相互作用可能专门激活特定的细胞表型。本研究鉴定了一种新型转录调节剂,其具有 FLYWCH/Zn 指 DNA 结合域,称为“FLYWCH1”。使用改良的酵母双杂交 Ras 募集系统,证明 FLYWCH1 可直接与未磷酸化(核)β-catenin 有效结合,从而抑制 Wnt/β-catenin 信号的转录活性,而 TCF4 无法挽救这种活性。FLYWCH1 重新排列了 β-catenin/TCF4 的转录活性,可选择性地阻断与结直肠癌细胞迁移和形态相关的特定下游基因的表达,包括 ZEB1、EPH4 和 E-cadherin。因此,FLYWCH1 过度表达可降低细胞迁移能力并增加细胞附着。在患者的正常与原发性和转移性结直肠肿瘤组织中,FLYWCH1 的表达与 ZEB1 和 EPHA4 的表达水平呈负相关。因此,FLYWCH1 在结直肠癌细胞极性/迁移过程中拮抗β-catenin/TCF4 信号。意义:本研究揭示了 FLYWCH1 抑制β-catenin 诱导的 ZEB1 并增加钙粘蛋白介导的细胞附着,从而防止结直肠肿瘤转移的新分子机制。