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首页> 外文期刊>Epigenetics & Chromatin >Pluripotency factor binding and Tsix expression act synergistically to repress Xist in undifferentiated embryonic stem cells
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Pluripotency factor binding and Tsix expression act synergistically to repress Xist in undifferentiated embryonic stem cells

机译:多能因子结合和Tsix表达协同作用,以抑制未分化胚胎干细胞中的Xist

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Background Expression of Xist, the master regulator of X chromosome inactivation, is extinguished in pluripotent cells, a process that has been linked to programmed X chromosome reactivation. The key pluripotency transcription factors Nanog, Oct4 and Sox2 are implicated in Xist gene extinction, at least in part through binding to an element located in Xist intron 1. Other pathways, notably repression by the antisense RNA Tsix, may also be involved. Results Here we employ a transgene strategy to test the role of the intron 1 element and Tsix in repressing Xist in ES cells. We find that deletion of the intron 1 element causes a small increase in Xist expression and that simultaneous deletion of the antisense regulator Tsix enhances this effect. Conclusion We conclude that Tsix and pluripotency factors act synergistically to repress Xist in undifferentiated embryonic stem cells. Double mutants do not exhibit maximal levels of Xist expression, indicating that other pathways also play a role.
机译:Xist(X染色体失活的主要调控因子)的背景表达在多能细胞中消失,这一过程与程序化的X染色体重新活化有关。关键的多能性转录因子Nanog,Oct4和Sox2至少部分地通过与位于Xist内含子1中的元件结合而牵涉到Xist基因的灭绝中。其他途径,特别是反义RNA Tsix的抑制也可能参与其中。结果在这里,我们采用转基因策略来测试内含子1元件和Tsix在抑制ES细胞中Xist的作用。我们发现内含子1元素的删除会导致Xist表达的少量增加,并且反义调节剂Tsix的同时删除会增强此效果。结论我们得出结论,Tsix和多能性因子在未分化的胚胎干细胞中具有协同作用,以抑制Xist。双重突变体未表现出最大水平的Xist表达,表明其他途径也起作用。

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