Brown Cheryl Y, Dayan Sonia, Wong Soon Wei, Kaczmarek Adrian, Hope Christopher M, Pederson Stephen M, Arnet Victoria, Goodall Gregory J, Russell Darryl, Sadlon Timothy J, Barry Simon C
Discipline of Paediatrics, School of Medicine, Women's and Children's Hospital, University of Adelaide, Adelaide, 5006 SA, Australia.
Molecular Immunology, Robinson Research Institute, School of Medicine, University of Adelaide, Adelaide, 5005 SA, Australia.
Oncotarget. 2018 Jun 12;9(45):27708-27727. doi: 10.18632/oncotarget.25523.
Control of oncogenes, including ZEB1 and ZEB2, is a major checkpoint for preventing cancer, and loss of this control contributes to many cancers, including breast cancer. Thus tumour suppressors, such as FOXP3, which is mutated or lost in many cancer tissues, play an important role in maintaining normal tissue homeostasis. Here we show for the first time that ZEB2 is selectively down regulated by FOXP3 and also by the FOXP3 induced microRNA, miR-155. Interestingly, neither FOXP3 nor miR-155 directly altered the expression of ZEB1. In breast cancer cells repression of ZEB2, independently of ZEB1, resulted in reduced expression of a mesenchymal marker, Vimentin and reduced invasion. However, there was no de-repression of E-cadherin and migration was enhanced. Small interfering RNAs targeting ZEB2 suggest that this was a direct effect of ZEB2 and not FOXP3/miR-155. In normal human mammary epithelial cells, depletion of endogenous FOXP3 resulted in de-repression of ZEB2, accompanied by upregulated expression of vimentin, increased E-cadherin expression and cell morphological changes. We suggest that FOXP3 may help maintain normal breast epithelial characteristics through regulation of ZEB2, and loss of FOXP3 in breast cancer cells results in deregulation of ZEB2.
包括ZEB1和ZEB2在内的癌基因的调控是预防癌症的主要关卡,而这种调控的缺失会导致包括乳腺癌在内的多种癌症。因此,肿瘤抑制因子,如在许多癌症组织中发生突变或缺失的FOXP3,在维持正常组织内环境稳定中发挥着重要作用。在此,我们首次表明ZEB2受FOXP3以及FOXP3诱导的微小RNA(miR-155)选择性下调。有趣的是,FOXP3和miR-155均未直接改变ZEB1的表达。在乳腺癌细胞中,独立于ZEB1对ZEB2的抑制导致间充质标志物波形蛋白的表达降低以及侵袭能力减弱。然而,E-钙黏蛋白没有去抑制,且迁移能力增强。靶向ZEB2的小干扰RNA表明这是ZEB2的直接作用,而非FOXP3/miR-155的作用。在正常人乳腺上皮细胞中,内源性FOXP3的缺失导致ZEB2去抑制,同时波形蛋白表达上调、E-钙黏蛋白表达增加以及细胞形态改变。我们认为,FOXP3可能通过调控ZEB2来帮助维持正常乳腺上皮特征,而乳腺癌细胞中FOXP3的缺失导致ZEB2失调。