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Myc and Max Genome-Wide Binding Sites Analysis Links the Myc Regulatory Network with the Polycomb and the Core Pluripotency Networks in Mouse Embryonic Stem Cells

机译:Myc和最大基因组范围的结合位点分析将Myc调控网络与小鼠胚胎干细胞中的多梳和核心多能性网络联系起来。

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摘要

Myc is a master transcription factor that has been demonstrated to be required for embryonic stem cell (ESC) pluripotency, self-renewal, and inhibition of differentiation. Although recent works have identified several Myc-targets in ESCs, the list of Myc binding sites is largely incomplete due to the low sensitivity and specificity of the antibodies available. To systematically identify Myc binding sites in mouse ESCs, we used a stringent streptavidin-based genome-wide chromatin immunoprecipitation (ChIP-Seq) approach with biotin-tagged Myc (Bio-Myc) as well as a ChIP-Seq of the Myc binding partner Max. This analysis identified 4325 Myc binding sites, of which 2885 were newly identified. The identified sites overlap with more than 85% of the Max binding sites and are enriched for H3K4me3-positive promoters and active enhancers. Remarkably, this analysis unveils that Myc/Max regulates chromatin modifiers and transcriptional regulators involved in stem cell self-renewal linking the Myc-centered network with the Polycomb and the Core networks. These results provide insights into the contribution of Myc and Max in maintaining stem cell self-renewal and keeping these cells in an undifferentiated state.
机译:Myc是一种主要转录因子,已被证明是胚胎干细胞(ESC)多能性,自我更新和分化抑制所必需的。尽管最近的工作已经在ESC中确定了多个Myc靶标,但是由于可用抗体的敏感性和特异性低,Myc结合位点的列表在很大程度上是不完整的。为了系统地鉴定小鼠ESC中的Myc结合位点,我们使用了严格的基于链霉亲和素的全基因组染色质免疫沉淀(ChIP-Seq)方法和生物素标记的Myc(Bio-Myc)以及Myc结合伴侣的ChIP-Seq最高该分析鉴定了4325个Myc结合位点,其中2885个是新鉴定的。鉴定出的位点与Max结合位点的85%以上重叠,并富含H3K4me3阳性启动子和活性增强子。值得注意的是,该分析揭示Myc / Max调节染色质修饰剂和转录调节剂,参与干细胞自我更新,将Myc中心网络与Polycomb和Core网络联系起来。这些结果提供了Myc和Max在维持干细胞自我更新并使这些细胞保持未分化状态中的作用的见解。

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