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The miR-200 Family Inhibits Epithelial-Mesenchymal Transition and Cancer Cell Migration by Direct Targeting of E-cadherin Transcriptional Repressors ZEB1 and ZEB2*

机译:通过直接靶向E-钙粘蛋白转录阻遏物ZEB1和ZEB2 *,miR-200家族抑制上皮-间质转化和癌细胞迁移*

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摘要

MicroRNAs are small non-coding RNA molecules that can regulate gene expression by interacting with multiple mRNAs and inducing either translation suppression or degradation of mRNA. Recently, several miRNAs were identified as either promoters or suppressors of metastasis. However, it is unclear in which step(s) of the multistep metastatic cascade these miRNAs play a defined functional role. To study the functional importance of miRNAs in epithelial-mesenchymal transition (EMT), a process thought to initiate metastasis by enhancing the motility of tumor cells, we used a well established in vitro EMT assay: transforming growth factor-β-induced EMT in NMuMG murine mammary epithelial cells. We found that members of the miR-200 family, organized as two clusters in the genome, were repressed during EMT. Overexpression of each miRNA individually or as clusters in NMuMG cells hindered EMT by enhancing E-cadherin expression through direct targeting of ZEB1 and ZEB2, which encode transcriptional repressors of E-cadherin. In the 4TO7 mouse carcinoma cell line, which expresses low levels of endogenous E-cadherin and displays a mesenchymal phenotype, ectopic expression of the miR-200 family miRNAs significantly increased E-cadherin expression and altered cell morphology to an epithelial phenotype. Furthermore, ectopic expression of each miR-200 miRNA cluster significantly reduced the in vitro motility of 4TO7 cells in migration assays. These results suggested that loss of expression of the miR-200 family members may play a critical role in the repression of E-cadherin by ZEB1 and ZEB2 during EMT, thereby enhancing migration and invasion during cancer progression.
机译:MicroRNA是小的非编码RNA分子,可通过与多个mRNA相互作用并诱导mRNA的翻译抑制或降解来调节基因表达。最近,一些miRNA被鉴定为转移的启动子或抑制子。但是,目前尚不清楚这些miRNA在多步转移级联反应的哪个步骤中发挥功能。为了研究miRNA在上皮-间充质转化(EMT)中的功能重要性,该过程被认为是通过增强肿瘤细胞的运动性来启动转移的过程,我们使用了完善的体外EMT检测方法:在NMuMG中转化生长因子-β诱导的EMT鼠乳腺上皮细胞。我们发现在EMT期间,miR-200家族的成员被组织为基因组中的两个簇,被抑制。通过直接靶向编码E-钙粘蛋白的转录阻遏物的ZEB1和ZEB2增强E-钙粘蛋白的表达,每个miRNA单独或作为簇在NMuMG细胞中的过度表达阻碍了EMT。在表达低水平的内源性E-钙粘蛋白并显示间充质表型的4TO7小鼠癌细胞系中,miR-200家族miRNA的异位表达显着增加了E-钙粘蛋白的表达并将细胞形态改变为上皮表型。此外,在迁移分析中,每个miR-200 miRNA簇的异位表达都显着降低了4TO7细胞的体外运动能力。这些结果表明,miR-200家族成员表达的丧失可能在EMT期间通过ZEB1和ZEB2抑制E-钙粘蛋白发挥关键作用,从而增强癌症进展过程中的迁移和侵袭。

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