Department of Cellular and Molecular Immunology, Max Planck Institute of Immunobiology and Epigenetics, 79108 Freiburg, Germany.
International Max Planck Research School for Molecular and Cellular Biology, Max Planck Institute of Immunobiology and Epigenetics, 79108 Freiburg, Germany.
Genes Dev. 2018 Jan 15;32(2):96-111. doi: 10.1101/gad.309583.117. Epub 2018 Feb 9.
B-cell fate determination requires the action of transcription factors that operate in a regulatory network to activate B-lineage genes and repress lineage-inappropriate genes. However, the dynamics and hierarchy of events in B-cell programming remain obscure. To uncouple the dynamics of transcription factor expression from functional consequences, we generated induction systems in developmentally arrested pre-pro-B cells to allow precise experimental control of EBF1 expression in the genomic context of progenitor cells. Consistent with the described role of EBF1 as a pioneer transcription factor, we show in a time-resolved analysis that EBF1 occupancy coincides with EBF1 expression and precedes the formation of chromatin accessibility. We observed dynamic patterns of EBF1 target gene expression and sequential up-regulation of transcription factors that expand the regulatory network at the pro-B-cell stage. A continuous EBF1 function was found to be required for promoter activity and for the maintenance of an accessible chromatin domain that is permissive for binding of other transcription factors. Notably, transient EBF1 occupancy was detected at lineage-inappropriate genes prior to their silencing in pro-B cells. Thus, persistent and transient functions of EBF1 allow for an ordered sequence of epigenetic and transcriptional events in B-cell programming.
B 细胞命运的决定需要转录因子的作用,这些转录因子在一个调控网络中运作,激活 B 细胞谱系基因并抑制谱系不合适的基因。然而,B 细胞编程中的事件的动态和层次仍然不清楚。为了将转录因子表达的动力学与功能后果分开,我们在发育停滞的前 B 细胞中生成了诱导系统,以允许在祖细胞的基因组背景中精确地实验控制 EBF1 的表达。与 EBF1 作为先驱转录因子的描述作用一致,我们在时间分辨分析中表明,EBF1 占据与 EBF1 表达一致,并先于染色质可及性的形成。我们观察到 EBF1 靶基因表达的动态模式,并观察到转录因子的顺序上调,这些转录因子在 pro-B 细胞阶段扩展了调控网络。发现持续的 EBF1 功能对于启动子活性和维持允许其他转录因子结合的可及染色质域是必需的。值得注意的是,在 pro-B 细胞中沉默之前,在线粒体不合适的基因上检测到短暂的 EBF1 占据。因此,EBF1 的持续和短暂功能允许 B 细胞编程中的表观遗传和转录事件的有序序列。