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A transient disruption of fibroblastic transcriptional regulatory network facilitates trans-differentiation

机译:瞬态破坏成纤维细胞转录调节网络有助于转差

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摘要

Transcriptional Regulatory Networks (TRNs) coordinate multiple transcription factors (TFs) in concert to maintain tissue homeostasis and cellular function. The re-establishment of target cell TRNs has been previously implicated in direct trans-differentiation studies where the newly introduced TFs switch on a set of key regulatory factors to induce de novo expression and function. However, the extent to which TRNs in starting cell types, such as dermal fibroblasts, protect cells from undergoing cellular reprogramming remains largely unexplored. In order to identify TFs specific to maintaining the fibroblast state, we performed systematic knockdown of 18 fibroblast-enriched TFs and analyzed differential mRNA expression against the same 18 genes, building a Matrix-RNAi. The resulting expression matrix revealed seven highly interconnected TFs. Interestingly, suppressing four out of seven TFs generated lipid droplets and induced PPARG and CEBPA expression in the presence of adipocyte-inducing medium only, while negative control knockdown cells maintained fibroblastic character in the same induction regime. Global gene expression analyses further revealed that the knockdown-induced adipocytes expressed genes associated with lipid metabolism and significantly suppressed fibroblast genes. Overall, this study reveals the critical role of the TRN in protecting cells against aberrant reprogramming, and demonstrates the vulnerability of donor cell's TRNs, offering a novel strategy to induce transgene-free trans-differentiations.
机译:转录调节网络(TRNS)协调多转录因子(TFS),以维持组织稳态和细胞功能。重新建立靶细胞TRNS已经直接转分化的研究,其中新推出的TF开启一组关键调节因子诱导从头表达和功能以前牵连。然而,在起始细胞类型(例如皮肤成纤维细胞)(例如皮肤成纤维细胞)中保护细胞免受接受细胞重编程的程度仍然很大程度上是未开发的。为了鉴定特异性以保持成纤维细胞状态,我们对18个成纤维细胞的TFS进行系统敲低,并分析了与相同的18个基因的差分mRNA表达,构建基质-RNAi。得到的表达矩阵揭示了七个高度互连的TFS。有趣的是,在脂肪细胞诱导培养基存在下,抑制七种TFS产生的脂质液滴中的四种,而阴性对照敲低细胞在相同的感应制度中保持纤维囊结构。全局基因表达进一步揭示了敲低诱导的脂肪细胞表达与脂质代谢相关的基因,并显着抑制成纤维细胞基因。总体而言,该研究揭示了TRN在保护细胞免受异常重编程的关键作用,并证明了供体细胞的TRNS的脆弱性,提供了一种诱导无转基因的反差异的新策略。

著录项

  • 来源
    《Nucleic Acids Research》 |2014年第14期|共9页
  • 作者单位

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Ctr Life Sci Technol Div Genom Technol Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    Chugai Pharmaceut Co Ltd Div Res Discovery Pharmacol Dept 1 Gotemba Shizuoka 4128513 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

    RIKEN Omics Sci Ctr Tsurumi Ku Yokohama Kanagawa 2300045 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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