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肉瘤细胞中上皮-间质转化的诱导

Induction of Mesenchymal-Epithelial Transitions in Sarcoma Cells.

作者信息

Ware Kathryn E, Gilja Shivee, Xu Shenghan, Shetler Samantha, Jolly Mohit K, Wang Xueyang, Bartholf Dewitt Suzanne, Hish Alexander J, Jordan Sarah, Eward William, Levine Herbert, Armstrong Andrew J, Somarelli Jason A

机构信息

Department of Medicine, Duke University.

Department of Bioengineering, Rice University.

出版信息

J Vis Exp. 2017 Apr 7(122):55520. doi: 10.3791/55520.

Abstract

Phenotypic plasticity refers to a phenomenon in which cells transiently gain traits of another lineage. During carcinoma progression, phenotypic plasticity drives invasion, dissemination and metastasis. Indeed, while most of the studies of phenotypic plasticity have been in the context of epithelial-derived carcinomas, it turns out sarcomas, which are mesenchymal in origin, also exhibit phenotypic plasticity, with a subset of sarcomas undergoing a phenomenon that resembles a mesenchymal-epithelial transition (MET). Here, we developed a method comprising the miR-200 family and grainyhead-like 2 (GRHL2) to mimic this MET-like phenomenon observed in sarcoma patient samples.We sequentially express GRHL2 and the miR-200 family using cell transduction and transfection, respectively, to better understand the molecular underpinnings of these phenotypic transitions in sarcoma cells. Sarcoma cells expressing miR-200s and GRHL2 demonstrated enhanced epithelial characteristics in cell morphology and alteration of epithelial and mesenchymal biomarkers. Future studies using these methods can be used to better understand the phenotypic consequences of MET-like processes on sarcoma cells, such as migration, invasion, metastatic propensity, and therapy resistance.

摘要

表型可塑性是指细胞短暂获得另一种细胞谱系特征的现象。在癌症进展过程中,表型可塑性驱动侵袭、播散和转移。事实上,虽然大多数关于表型可塑性的研究都以上皮来源的癌症为背景,但结果表明,起源于间充质的肉瘤也表现出表型可塑性,一部分肉瘤会经历类似间充质-上皮转化(MET)的现象。在此,我们开发了一种包含miR-200家族和颗粒头样2(GRHL2)的方法,以模拟在肉瘤患者样本中观察到的这种类似MET的现象。我们分别通过细胞转导和转染依次表达GRHL2和miR-200家族,以更好地理解肉瘤细胞中这些表型转变的分子基础。表达miR-200和GRHL2的肉瘤细胞在细胞形态上表现出增强的上皮特征,上皮和间充质生物标志物也发生了改变。使用这些方法的未来研究可用于更好地理解类似MET过程对肉瘤细胞的表型影响,如迁移、侵袭、转移倾向和治疗抗性。

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