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首页> 外文期刊>Development >ChIP-seq analysis of genomic binding regions of five major transcription factors highlights a central role for ZIC2 in the mouse epiblast stem cell gene regulatory network
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ChIP-seq analysis of genomic binding regions of five major transcription factors highlights a central role for ZIC2 in the mouse epiblast stem cell gene regulatory network

机译:五个主要转录因子的基因组结合区域的CHIP-SEQ分析凸显了ZIC2在小鼠卵囊干细胞基因监管网络中的核心作用

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摘要

To obtain insight into the transcription factor (TF)-dependent regulation of epiblast stem cells (EpiSCs), we performed ChIP-seq analysis of the genomic binding regions of five major TFs. Analysis of in vivo biotinylated ZIC2, OTX2, SOX2, POU5F1 and POU3F1 binding in EpiSCs identified several new features. (1) Megabase-scale genomic domains rich in ZIC2 peaks and genes alternate with those rich in POU3F1 but sparse in genes, reflecting the clustering of regulatory regions that act at short and long-range, which involve binding of ZIC2 and POU3F1, respectively. (2) The enhancers bound by ZIC2 and OTX2 prominently regulate TF genes in EpiSCs. (3) The binding sites for SOX2 and POU5F1 in mouse embryonic stem cells (ESCs) and EpiSCs are divergent, reflecting the shift in the major acting TFs from SOX2/POU5F1 in ESCs to OTX2/ZIC2 in EpiSCs. (4) This shift in the major acting TFs appears to be primed by binding of ZIC2 in ESCs at relevant genomic positions that later function as enhancers following the disengagement of SOX2/POU5F1 from major regulatory functions and subsequent binding by OTX2. These new insights into EpiSC gene regulatory networks gained from this study are highly relevant to early stage embryogenesis.
机译:为了获得进入转录因子(TF)的依赖性调节表血管干细胞(EPISC),我们对五个主要TFS的基因组结合区域进行了芯片SEQ分析。在EPISC中的体内生物素化ZIC2,OTX2,SOX2,POU5F1和POU3F1结合的分析确定了几种新功能。 (1)富含ZIC2峰和基因的兆级基因组结构域与富含POU3F1的那些,但基因稀疏,反映了在短期和长距离作用的调节区域的聚类,其涉及ZIC2和POU3F1的结合。 (2)受ZIC2和OTX2结合的增强剂突出地调节了EPISC中的TF基因。 (3)小鼠胚胎干细胞(ESC)和EPISS中SOX2和POU5F1的结合位点是发散的,反映了在ESCS中的SOX2 / POU5F1中的主要作用TFS的转变为EPISCS中的OTX2 / ZIC2。 (4)主要作用TFS的这种转变似乎通过在相关基因组位置的相关基因组位置的ZIC2中的结合引发,即在SOX2 / POU5F1脱离的增强剂从主要调节功能和随后的OTX2结合后起作用。本研究中获得的EPISC基因监管网络的新见解与早期胚胎发生高度相关。

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  • 来源
    《Development 》 |2017年第11期| 共11页
  • 作者单位

    Osaka Univ Grad Sch Frontier Biosci Yamadaoka 1-3 Suita Osaka 5650871 Japan;

    Osaka Univ Grad Sch Frontier Biosci Yamadaoka 1-3 Suita Osaka 5650871 Japan;

    Kyushu Univ Dept Dev Biol Grad Sch Med Sci Higashi Ku 3-1-1 Maidashi Fukuoka 8128582 Japan;

    Kyoto Sangyo Univ Fac Life Sci Kita Ku Kyoto 6038555 Japan;

    Osaka Univ Grad Sch Frontier Biosci Yamadaoka 1-3 Suita Osaka 5650871 Japan;

    Emory Univ Dept Microbiol &

    Immunol Atlanta GA 30322 USA;

    Natl Inst Basic Biol Funct Genom Facil Okazaki Aichi 4448585 Japan;

    Natl Inst Basic Biol Funct Genom Facil Okazaki Aichi 4448585 Japan;

    Osaka Univ Grad Sch Frontier Biosci Yamadaoka 1-3 Suita Osaka 5650871 Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体形态学 ;
  • 关键词

    ZIC2; POU3F1; OTX2; ESC; EpiSC; Mouse;

    机译:Zic2;POU3F1;OTX2;ESC;EPISC;鼠标;

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