首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >Zeb1 and Snail1 engage miR-200f transcriptional and epigenetic regulation during EMT
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Zeb1 and Snail1 engage miR-200f transcriptional and epigenetic regulation during EMT

机译:Zeb1和Snail1在EMT期间接受MIR-200F转录和表观遗传调节

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摘要

Cell plasticity is emerging as a key regulator of tumor progression and metastasis. During carcinoma dissemination epithelial cells undergo epithelial to mesenchymal transition (EMT) processes characterized by the acquisition of migratory/invasive properties, while the reverse, mesenchymal to epithelial transition (MET) process, is also essential for metastasis outgrowth. Different transcription factors, called EMT-TFs, including Snail, bHLH and Zeb families are drivers of the EMT branch of epithelial plasticity, and can be post-transcriptionally downregulated by several miRNAs, as the miR-200 family. The specific or redundant role of different EMT-TFs and their functional interrelations are not fully understood. To study the interplay between different EMT-TFs, comprehensive gain and loss-of-function studies of Snail1, Snail2 and/or Zeb1 factors were performed in the prototypical MDCK cell model system. We here describe that Snail1 and Zeb1 are mutually required for EMT induction while continuous Snail1 and Snail2 expression, but not Zeb1, is needed for maintenance of the mesenchymal phenotype in MDCK cells. In this model system, EMT is coordinated by Snail1 and Zeb1 through transcriptional and epigenetic downregulation of the miR-200 family. Interestingly, Snail1 is involved in epigenetic CpG DNA methylation of the miR-200 loci, essential to maintain the mesenchymal phenotype. The present results thus define a novel functional interplay between Snail and Zeb EMT-TFs in miR-200 family regulation providing a molecular link to their previous involvement in the generation of EMT process in vivo.
机译:细胞可塑性作为肿瘤进展和转移的关键调节剂。在癌迁移上皮细胞期间进行上皮细胞到间充质转换(EMT)的过程,其特征在于获取迁移/侵袭性特性,而逆转,间充质转换(MET)过程也是转移产量至关重要的。不同的转录因子,称为EMT-TFS,包括蜗牛,BHLH和Zeb系列是上皮可塑性的EMT分支的司机,并且可以通过几种miRNA的转录后下调,作为miR-200家族。不同EMT-TFS及其功能相互关系的特定或冗余作用不完全理解。为了研究不同EMT-TFS之间的相互作用,在原型MDCK细胞模型系统中进行了综合增益和蜗牛的函数丧失研究,SNAIL2和/或Zeb1因子。在这里,我们描述了Snail1和Zeb1的EMT诱导,同时连续蜗牛1和蜗牛2表达而不是ZeB1,以维持MDCK细胞中的间充质表型。在该模型系统中,EMT通过蜗牛和ZEB1协调,通过MIR-200家族的转录和表观遗传下调。有趣的是,Snail1参与了MiR-200基因座的表观遗传CpG DNA甲基化,必须维持间充质表型。因此,本结果定义了MiR-200家族调节中蜗牛和Zeb EMT-TFS之间的新功能相互作用,其提供了其先前参与体内EMT过程的分子链接。

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