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EMT transcription factor ZEB1 alters the epigenetic landscape of colorectal cancer cells

机译:EMT转录因子Zeb1改变了结直肠癌细胞的表观遗传景观

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Epigenetic deregulation remarkably triggers mechanisms associated with tumor aggressiveness like epithelial-mesenchymal transition (EMT). Since EMT is a highly complex, but also reversible event, epigenetic processes such as DNA methylation or chromatin alterations must be involved in its regulation. It was recently described that loss of the cell cycle regulator p21 was associated with a gain in EMT characteristics and an upregulation of the master EMT transcription factor ZEB1. In this study, in silico analysis was performed in combination with different in vitro and in vivo techniques to identify and verify novel epigenetic targets of ZEB1, and to proof the direct transcriptional regulation of SETD1B by ZEB1. The chorioallantoic-membrane assay served as an in vivo model to analyze the ZEB1/SETD1B interaction. Bioinformatical analysis of CRC patient data was used to examine the ZEB1/SETD1B network under clinical conditions and the ZEB1/SETD1B network was modeled under physiological and pathological conditions. Thus, we identified a self-reinforcing loop for ZEB1 expression and found that the SETD1B associated active chromatin mark H3K4me3 was enriched at the ZEB1 promoter in EMT cells. Moreover, clinical evaluation of CRC patient data showed that the simultaneous high expression of ZEB1 and SETD1B was correlated with the worst prognosis. Here we report that the expression of chromatin modifiers is remarkably dysregulated in EMT cells. SETD1B was identified as a new ZEB1 target in vitro and in vivo. Our study demonstrates a novel example of an activator role of ZEB1 for the epigenetic landscape in colorectal tumor cells.
机译:表观遗传失调显着触发与肿瘤侵袭性相关的机制,如上皮 - 间充质转换(EMT)。由于EMT是一种高度复杂的,而且还可以参与其调节,因此可逆事件,例如DNA甲基化或染色质变化等表观遗传过程。最近描述了细胞周期调节器P21的损失与EMT特征的增益相关,并且母EMT转录因子ZeB1的上调。在该研究中,在硅藻中与不同体外和体内技术组合进行的,以鉴定和验证Zeb1的新型表观遗传靶标,并证明Zeb1的直接转录调控。 Chorioallantoic膜测定用作体内模型,以分析Zeb1 / SetD1B相互作用。 CRC患者数据的生物信息分析用于检查临床条件下的ZEB1 / SETD1B网络,ZEB1 / SETD1B网络在生理和病理条件下进行建模。因此,我们鉴定了Zeb1表达的自增强环,发现SETD1B相关的活性染色质标记H3K4ME3在EMT细胞的ZEB1启动子处富集。此外,CRC患者数据的临床评估表明,ZEB1和SETD1B的同时高表达与最差的预后相关。在这里,我们认为染色质调节剂的表达在EMT细胞中显着过度消退。在体外和体内鉴定为新的Zeb1靶标的SetD1B。我们的研究表明了Zeb1在结肠直肠肿瘤细胞中Zeb1的激活剂作用的新实例。

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