Institute of Cancer and Genomic Sciences, College of Medical and Dental Sciences, University of Birmingham, Birmingham, B15 2TT, UK.
School of Chemistry, University of Birmingham, Edgbaston, Birmingham, B15 2TT, UK.
Nat Commun. 2019 Feb 11;10(1):691. doi: 10.1038/s41467-019-08487-5.
Most metazoan embryos commence development with rapid, transcriptionally silent cell divisions, with genome activation delayed until the mid-blastula transition (MBT). However, a set of genes escapes global repression and gets activated before MBT. Here we describe the formation and the spatio-temporal dynamics of a pair of distinct transcription compartments, which encompasses the earliest gene expression in zebrafish. 4D imaging of pri-miR430 and zinc-finger-gene activities by a novel, native transcription imaging approach reveals transcriptional sharing of nuclear compartments, which are regulated by homologous chromosome organisation. These compartments carry the majority of nascent-RNAs and active Polymerase II, are chromatin-depleted and represent the main sites of detectable transcription before MBT. Transcription occurs during the S-phase of increasingly permissive cleavage cycles. It is proposed, that the transcription compartment is part of the regulatory architecture of embryonic nuclei and offers a transcriptionally competent environment to facilitate early escape from repression before global genome activation.
大多数后生动物胚胎的发育起始于快速、转录沉默的细胞分裂,基因组的激活被延迟到中囊胚转换(MBT)时期。然而,有一组基因在 MBT 之前逃脱了整体抑制并被激活。在这里,我们描述了一对独特转录隔室的形成和时空动态,这些隔室包含了斑马鱼中最早的基因表达。通过一种新颖的、天然的转录成像方法对 pri-miR430 和锌指基因活性的 4D 成像显示,核隔室的转录共享受到同源染色体组织的调节。这些隔室携带了大部分新生 RNA 和活跃的聚合酶 II,染色质耗竭,并且在 MBT 之前是可检测转录的主要部位。转录发生在越来越有条件的分裂周期的 S 期。有人提出,转录隔室是胚胎核调控结构的一部分,为早期从整体抑制中逃脱并在全球基因组激活之前提供了一个具有转录能力的环境。