Developmental Biology, Institute Biology I, Faculty of Biology, University of Freiburg, Freiburg, Germany.
Mol Syst Biol. 2010;6:354. doi: 10.1038/msb.2010.9. Epub 2010 Mar 9.
The transcription factor POU5f1/OCT4 controls pluripotency in mammalian ES cells, but little is known about its functions in the early embryo. We used time-resolved transcriptome analysis of zebrafish pou5f1 MZspg mutant embryos to identify genes regulated by Pou5f1. Comparison to mammalian systems defines evolutionary conserved Pou5f1 targets. Time-series data reveal many Pou5f1 targets with delayed or advanced onset of expression. We identify two Pou5f1-dependent mechanisms controlling developmental timing. First, several Pou5f1 targets are transcriptional repressors, mediating repression of differentiation genes in distinct embryonic compartments. We analyze her3 gene regulation as example for a repressor in the neural anlagen. Second, the dynamics of SoxB1 group gene expression and Pou5f1-dependent regulation of her3 and foxD3 uncovers differential requirements for SoxB1 activity to control temporal dynamics of activation, and spatial distribution of targets in the embryo. We establish a mathematical model of the early Pou5f1 and SoxB1 gene network to demonstrate regulatory characteristics important for developmental timing. The temporospatial structure of the zebrafish Pou5f1 target networks may explain aspects of the evolution of the mammalian stem cell networks.
转录因子 POU5f1/OCT4 控制哺乳动物胚胎干细胞的多能性,但对于其在早期胚胎中的功能知之甚少。我们使用时间分辨的斑马鱼 pou5f1 MZspg 突变体胚胎转录组分析来鉴定受 Pou5f1 调控的基因。与哺乳动物系统的比较定义了进化保守的 Pou5f1 靶标。时间序列数据揭示了许多具有延迟或提前表达起始的 Pou5f1 靶标。我们确定了两种控制发育时间的 Pou5f1 依赖性机制。首先,几个 Pou5f1 靶标是转录抑制因子,在不同的胚胎区室中介导分化基因的抑制。我们分析了 her3 基因调控作为神经原区的一个抑制因子的例子。其次, SoxB1 组基因表达的动力学和 Pou5f1 对 her3 和 foxD3 的依赖性调控揭示了 SoxB1 活性控制激活的时间动力学和胚胎中靶标的空间分布的差异要求。我们建立了早期 Pou5f1 和 SoxB1 基因网络的数学模型,以证明对发育时间很重要的调控特征。斑马鱼 Pou5f1 靶标网络的时空结构可能解释了哺乳动物干细胞网络进化的某些方面。