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首页> 外文期刊>Frontiers in Cell and Developmental Biology >An Esrrb and Nanog Cell Fate Regulatory Module Controlled by Feed Forward Loop Interactions
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An Esrrb and Nanog Cell Fate Regulatory Module Controlled by Feed Forward Loop Interactions

机译:ESRRB和Nanog Cell Fate监管模块通过馈送前进循环相互作用控制

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摘要

Cell fate decisions during development are governed by multi-factorial regulatory mechanisms including chromatin remodelling, DNA methylation, binding of transcription factors to specific loci, RNA transcription and protein synthesis. However, the mechanisms by which such regulatory “dimensions” coordinate cell fate decisions are currently poorly understood. Here we quantified the multi-dimensional molecular changes that occur in mouse embryonic stem cells (mESCs) upon depletion of Estrogen related receptor beta (Esrrb), a key pluripotency regulator. Comparative analyses of expression changes subsequent to depletion of Esrrb or Nanog, indicated that a system of interlocked feed-forward loops involving both factors, plays a central part in regulating the timing of mESC fate decisions. Taken together, our meta-analyses support a hierarchical model in which pluripotency is maintained by an Oct4-Sox2 regulatory module, while the timing of differentiation is regulated by a Nanog-Esrrb.
机译:在开发过程中的细胞命运决定受多数监管机制的管辖,包括染色质重塑,DNA甲基化,转录因子与特定基因座,RNA转录和蛋白质合成的结合。 然而,这种监管“尺寸”坐标细胞命运决策的机制目前很差。 在这里,我们量化了在雌激素相关受体β(ESRRB)的耗尽时在小鼠胚胎干细胞(MESCS)中发生的多维分子变化,是一个关键多能性调节剂。 ESRRB或NANOG耗尽后表达的比较分析表明,涉及这两个因素的互锁前馈环系统,在调节MESC命运决策时起到一个核心部分。 我们的Meta-Analyzes一起支撑了一个分层模型,其中多能性由OCT4-SOX2调节模块维持,而分化的时序由纳米ESRRB调节。

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