Department of Pathology, Instituto de Biomedicina de Sevilla, CSIC-Universidad de Sevilla, Hospital Universitario Virgen del Rocío, Seville, Spain.
J Pathol. 2014 Feb;232(3):319-29. doi: 10.1002/path.4289.
Although it is becoming clear that certain miRNAs fulfil a fundamental role in the regulation of the epithelial-to-mesenchymal transition (EMT), a comprehensive study of the miRNAs associated with this process has yet to be performed. Here, we profiled the signature of miRNA expression in an in vitro model of EMT, ectopically expressing in MDCK cells one of seven EMT transcription factors (SNAI1, SNAI2, ZEB1, ZEB2, TWIST1, TWIST2 or E47) or the EMT inducer LOXL2. In this way, we identified a core subset of deregulated miRNAs that were further validated in vivo, studying endometrial carcinosarcoma (ECS), a tumour entity that represents an extreme example of phenotypic plasticity. Moreover, epigenetic silencing through DNA methylation of miRNA genes of the miR-200 family and miR-205 that are down-regulated during EMT was evident in both the in vitro (MDCK transfectants) and in vivo (ECS) models of EMT. The strong correlation between expression and DNA methylation suggests a major role for this epigenetic mark in the regulation of the miR-141-200c locus.
尽管某些 miRNA 在调控上皮间质转化 (EMT) 中起着至关重要的作用已逐渐明晰,但针对与该过程相关的 miRNA 的全面研究尚未开展。在此,我们通过体外 EMT 模型对 miRNA 表达谱进行了分析,在 MDCK 细胞中转染 7 种 EMT 转录因子(SNAI1、SNAI2、ZEB1、ZEB2、TWIST1、TWIST2 或 E47)或 EMT 诱导剂 LOXL2 中的一种。由此,我们鉴定到一组核心失调 miRNA,并在体内研究子宫内膜癌肉瘤 (ECS) 时对其进行了进一步验证,后者是表型可塑性的极端实例。此外,miRNA 基因 miR-200 家族和 miR-205 的 miRNA 因 DNA 甲基化而沉默,这些 miRNA 在 EMT 过程中下调,这一表观遗传沉默在 EMT 的体外 (MDCK 转染子) 和体内 (ECS) 模型中均有体现。表达与 DNA 甲基化之间的强相关性表明,这种表观遗传标记在 miR-141-200c 基因座的调控中起着重要作用。