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EMT 多个阶段的层次调节景观。

A Hierarchical Regulatory Landscape during the Multiple Stages of EMT.

机构信息

Department of Biomedicine, University of Basel, Basel 4058, Switzerland.

Department of Biosystems Science and Engineering, ETH Zurich, Basel 4058, Switzerland; Swiss Institute of Bioinformatics, Basel 4058, Switzerland.

出版信息

Dev Cell. 2019 Feb 25;48(4):539-553.e6. doi: 10.1016/j.devcel.2018.12.023. Epub 2019 Jan 31.

Abstract

Epithelial-mesenchymal transition (EMT) enables cells to gain migratory and invasive features underlined by major transcriptional and epigenetic reprogramming. However, most studies have focused on the endpoints of the EMT process, and the epistatic hierarchy of the transcriptional networks underlying EMT has remained elusive. We have used a siRNA-based, functional high-content microscopy screen to identify 46 (co)transcription factors ((co)TFs) and 13 miRNAs critically required for EMT in normal murine mammary gland (NMuMG) cells. We compared dynamic gene expression during EMT kinetics and used functional perturbation of critical (co)TFs and miRNAs to identify groups and networks of EMT genes. Computational analysis as well as functional validation experiments revealed interaction networks between TFs and miRNAs and delineated the hierarchical and functional interactions of multiple EMT regulatory networks in NMuMG cells.

摘要

上皮-间充质转化 (EMT) 使细胞能够在主要转录和表观遗传重编程的基础上获得迁移和侵袭的特征。然而,大多数研究都集中在 EMT 过程的终点上,而 EMT 所依赖的转录网络的上位性层次结构仍然难以捉摸。我们使用基于 siRNA 的功能高内涵显微镜筛选技术,鉴定了正常小鼠乳腺 (NMuMG) 细胞 EMT 过程中 46 个 (共)转录因子 ((co)TFs) 和 13 个 miRNA 的关键必需性。我们比较了 EMT 动力学过程中的动态基因表达,并利用关键 (co)TFs 和 miRNA 的功能干扰,鉴定了 EMT 基因的群组和网络。计算分析和功能验证实验揭示了 TF 和 miRNA 之间的相互作用网络,并描绘了 NMuMG 细胞中多个 EMT 调控网络的层次和功能相互作用。

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