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Depletion of?Tcf3?and?Lef1?maintains mouse embryonic stem cell self-renewal

机译:Tcf3和Lef1的耗竭保持小鼠胚胎干细胞的自我更新

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Mouse and rat embryonic stem cell (ESC) self-renewal can be maintained by dual inhibition of glycogen synthase kinase 3 (GSK3) and mitogen-activated protein kinase kinase (MEK). Inhibition of GSK3 promotes ESC self-renewal by abrogating T-cell factor 3 (TCF3)-mediated repression of the pluripotency network. How inhibition of MEK mediates ESC self-renewal, however, remains largely unknown. Here, we show that inhibition of MEK can significantly suppress lymphoid enhancer factor 1 (LEF1) expression in mouse ESCs. Knockdown or knockout of?Lef1?partially mimics the self-renewal-promoting effect of MEK inhibitors. Moreover, depletion of both?Tcf3?and?Lef1?enables maintenance of undifferentiated mouse ESCs without exogenous factors, cytokines or inhibitors. Transcriptome resequencing analysis reveals that LEF1 is closely associated with endoderm specification in ESCs. Thus, our study adds support to the notion that the key to maintaining the ESC ground state is to shield ESCs from differentiative cues.
机译:小鼠和大鼠胚胎干细胞(ESC)的自我更新可以通过糖原合酶激酶3(GSK3)和有丝分裂原激活的蛋白激酶激酶(MEK)的双重抑制来维持。抑制GSK3可通过废除T细胞因子3(TCF3)介导的多能网络抑制来促进ESC自我更新。然而,MEK抑制如何介导ESC自我更新仍然是未知之数。在这里,我们表明抑制MEK可以显着抑制小鼠ESC中的淋巴增强因子1(LEF1)表达。敲除或敲除“ Lef1”在一定程度上模拟了MEK抑制剂的自我更新促进作用。此外,Tcf3和Lef1的消耗都可以维持未分化的小鼠ESC,而没有外源因子,细胞因子或抑制剂。转录组重测序分析表明,LEF1与ESC中的内胚层规格密切相关。因此,我们的研究为以下观点提供了支持:维持ESC基态的关键是使ESC免受差异化提示的影响。

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