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致癌融合蛋白 EWS/FLI1 通过转录和转录后机制下调基因表达。

Oncogenic fusion protein EWS/FLI1 down-regulates gene expression by both transcriptional and posttranscriptional mechanisms.

机构信息

Molecular Biology Institute, University of California, Los Angeles, California 90095, USA.

出版信息

J Biol Chem. 2011 Jul 1;286(26):22750-7. doi: 10.1074/jbc.M111.225433. Epub 2011 Apr 28.

Abstract

Ewing family tumors are characterized by a translocation between the RNA binding protein EWS and one of five ETS transcription factors, most commonly FLI1. The fusion protein produced by the translocation has been thought to act as an aberrant transcription factor, leading to changes in gene expression and cellular transformation. In this study, we investigated the specific processes EWS/FLI1 utilizes to alter gene expression. Using both heterologous NIH 3T3 and human Ewing Family Tumor cell lines, we have demonstrated by quantitative pre-mRNA analysis that EWS/FLI1 repressed the expression of previously validated direct target genes at the level of transcript synthesis. ChIP experiments showed that EWS/FLI1 decreases the amount of Pol II at the promoter of down-regulated genes in both murine and human model systems. However, in down-regulated target genes, there was a significant disparity between the modulation of cognate mRNA and pre-mRNAs, suggesting that these genes could also be regulated at a posttranscriptional level. Confirming this, we found that EWS/FLI1 decreased the transcript half-life of insulin-like growth factor binding protein 3, a down-regulated direct target gene in human tumor-derived Ewing's sarcoma cell lines. Additionally, we have shown through reexpression experiments that full EWS/FLI1-mediated transcriptional repression requires intact EWS and ETS domains. Together these data demonstrate that EWS/FLI1 can dictate steady-state target gene expression by modulating both transcript synthesis and degradation.

摘要

尤文氏家族肿瘤的特征是 RNA 结合蛋白 EWS 与五个 ETS 转录因子之一(最常见的是 FLI1)之间发生易位。易位产生的融合蛋白被认为是一种异常转录因子,导致基因表达的改变和细胞转化。在这项研究中,我们研究了 EWS/FLI1 改变基因表达的具体过程。通过使用异源 NIH 3T3 和人类尤文氏家族肿瘤细胞系,我们通过定量前体 mRNA 分析表明,EWS/FLI1 在转录合成水平上抑制了先前验证的直接靶基因的表达。ChIP 实验表明,EWS/FLI1 在鼠和人类模型系统中,减少了下调基因启动子上 Pol II 的数量。然而,在下调的靶基因中,对应 mRNA 和前体 mRNA 的调节存在显著差异,表明这些基因也可以在转录后水平上受到调节。证实了这一点,我们发现 EWS/FLI1 降低了胰岛素样生长因子结合蛋白 3 的转录本半衰期,这是人类肿瘤衍生的尤文肉瘤细胞系中下调的直接靶基因。此外,通过重新表达实验,我们表明完整的 EWS/FLI1 介导的转录抑制需要完整的 EWS 和 ETS 结构域。这些数据共同表明,EWS/FLI1 可以通过调节转录合成和降解来决定靶基因的稳态表达。

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