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Activation of transcription factor circuity in 2i-induced ground state pluripotency is independent of repressive global epigenetic landscapes

机译:2I诱导的地面多能性中转录因子循环的激活与压抑的全球表观遗传景观无关

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摘要

Mouse embryonic stem cells (mESCs) cultured with MEK/ERK and GSK3 beta (2i) inhibitors transition to ground state pluripotency. Gene expression changes, redistribution of histone H3K27me3 profiles and global DNA hypomethylation are hallmarks of 2i exposure, but it is unclear whether epigenetic alterations are required to achieve and maintain ground state or occur as an outcome of 2i signal induced changes. Here we show that ESCs with three epitypes, WT, constitutively methylated, or hypomethylated, all undergo comparable morphological, protein expression and transcriptome changes independently of global alterations of DNA methylation levels or changes in H3K27me3 profiles. DazIand Fkbp6 expression are induced by 2i in all three epitypes, despite exhibiting hypermethylated promoters in constitutively methylated ESCs. We identify a number of activated gene promoters that undergo 2i dependent loss of H3K27me3 in all three epitypes, however genetic and pharmaceutical inhibition experiments show that H3K27me3 is not required for their silencing in non-2i conditions. By separating and defining their contributions, our data suggest that repressive epigenetic systems play minor roles in mESC self-renewal and naive ground state establishment by core sets of dominant pluripotency associated transcription factor networks, which operate independently from these epigenetic processes.
机译:用MEK / ERK和GSK3β(2I)培养的小鼠胚胎干细胞(MESCS)抑制剂转变为地态多能性。基因表达改变,组蛋白H3K27ME3谱和全局DNA低甲基化的重新分布是2I暴露的标志,但目前尚不清楚表观遗传改变是否需要达到和维持地位或作为2I信号诱导的结果发生的结果。在这里,我们表明,具有三个时期,WT,组成甲基化的或甲基化的ESC,所有这些都经历了可比的形态,蛋白质表达和转录组,而是独立于DNA甲基化水平的全局改变或H3K27ME3型材的变化。尽管在组成甲基化的ESCS中表现出高甲基化的启动子,但在所有三个截二性中诱导了Daziand FKBP6表达。我们鉴定了许多激活的基因启动子,其在所有三个闭合症中经历了2I级依赖性H3K27ME3的损失,但遗传和药物抑制实验表明它们在非2I条件下沉默不需要H3K27ME3。通过分离和定义他们的贡献,我们的数据表明,压抑的表观遗传系统通过核心多能性相关转录因子网络核心组中的MESC自我更新和天真地区建立中发挥着次要作用,其独立于这些表观遗传过程操作。

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  • 来源
    《Nucleic Acids Research》 |2020年第14期|共19页
  • 作者单位

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Tubingen Univ NMI Nat &

    Med Sci Inst Reutlingen Germany;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh WGH Inst Genet &

    Mol Med Ctr Genom &

    Expt Med Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Ctr Cardiovasc Sci Queens Med Res Inst Edinburgh EH16 4TJ Midlothian Scotland;

    Tubingen Univ NMI Nat &

    Med Sci Inst Reutlingen Germany;

    Tubingen Univ NMI Nat &

    Med Sci Inst Reutlingen Germany;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Ctr Cardiovasc Sci Queens Med Res Inst Edinburgh EH16 4TJ Midlothian Scotland;

    Univ Edinburgh WGH Inst Genet &

    Mol Med MRC Human Genet Unit Edinburgh EH4 2XU Midlothian Scotland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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