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Systematic repression of transcription factors reveals limited patterns of gene expression changes in ES cells

机译:转录因子的系统性抑制揭示了ES细胞中基因表达变化的有限模式

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摘要

Networks of transcription factors (TFs) are thought to determine and maintain the identity of cells. Here we systematically repressed each of 100 TFs with shRNA and carried out global gene expression profiling in mouse embryonic stem (ES) cells. Unexpectedly, only the repression of a handful of TFs significantly affected transcriptomes, which changed in two directions/trajectories: one trajectory by the repression of either Pou5f1 or Sox2; the other trajectory by the repression of either Esrrb, Sall4, Nanog, or Tcfap4. The data suggest that the trajectories of gene expression change are already preconfigured by the gene regulatory network and roughly correspond to extraembryonic and embryonic fates of cell differentiation, respectively. These data also indicate the robustness of the pluripotency gene network, as the transient repression of most TFs did not alter the transcriptomes.
机译:转录因子(TFs)网络被认为可以确定并维持细胞的身份。在这里,我们系统地用shRNA抑制100个TF中的每一个,并在小鼠胚胎干(ES)细胞中进行了全局基因表达谱分析。出乎意料的是,只有少量的TF的抑制会显着影响转录组,转录组在两个方向/轨迹上发生变化:一个通过Pou5f1或Sox2的抑制产生的轨迹;通过抑制Esrrb,Sall4,Nanog或Tcfap4形成另一条轨迹。数据表明基因表达变化的轨迹已经由基因调节网络预先配置,并且分别大致对应于细胞分化的胚外和胚胎命运。这些数据还表明了多能性基因网络的稳健性,因为大多数TF的瞬时阻遏并没有改变转录组。

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