Division of Molecular Biology, Biomedical Center, Faculty of Medicine, LMU Munich, Germany.
Helmholtz Zentrum München, Institute of Stem Cell Research, Neuherberg, Germany.
Nucleic Acids Res. 2019 Sep 26;47(17):9069-9086. doi: 10.1093/nar/gkz627.
Pioneer transcription factors (PTF) can recognize their binding sites on nucleosomal DNA and trigger chromatin opening for recruitment of other non-pioneer transcription factors. However, critical properties of PTFs are still poorly understood, such as how these transcription factors selectively recognize cell type-specific binding sites and under which conditions they can initiate chromatin remodelling. Here we show that early endoderm binding sites of the paradigm PTF Foxa2 are epigenetically primed by low levels of active chromatin modifications in embryonic stem cells (ESC). Priming of these binding sites is supported by preferential recruitment of Foxa2 to endoderm binding sites compared to lineage-inappropriate binding sites, when ectopically expressed in ESCs. We further show that binding of Foxa2 is required for chromatin opening during endoderm differentiation. However, increased chromatin accessibility was only detected on binding sites which are synergistically bound with other endoderm transcription factors. Thus, our data suggest that binding site selection of PTFs is directed by the chromatin environment and that chromatin opening requires collaboration of PTFs with additional transcription factors.
先驱转录因子 (PTF) 可以识别核小体 DNA 上的结合位点,并引发染色质开放,以招募其他非先驱转录因子。然而,PTF 的关键性质仍知之甚少,例如这些转录因子如何选择性地识别细胞类型特异性结合位点,以及在何种条件下它们可以启动染色质重塑。在这里,我们表明,范例 PTF Foxa2 的早期内胚层结合位点通过胚胎干细胞 (ESC) 中低水平的活性染色质修饰进行表观遗传启动。当异位表达在 ESCs 中时,Foxa2 优先招募到内胚层结合位点而不是谱系不当的结合位点,从而支持这些结合位点的启动。我们进一步表明,Foxa2 的结合对于内胚层分化过程中的染色质开放是必需的。然而,仅在与其他内胚层转录因子协同结合的结合位点上检测到染色质可及性增加。因此,我们的数据表明 PTF 结合位点的选择是由染色质环境指导的,并且染色质开放需要 PTF 与其他转录因子的协作。