Department of Computational Biology and Medical Sciences, The University of Tokyo, Kashiwa 277-8562, Japan.
Department of Integrated Biosciences, Graduate School of Frontier Sciences, The University of Tokyo, Kashiwa 277-8562, Japan.
Nucleic Acids Res. 2024 Jun 24;52(11):6158-6170. doi: 10.1093/nar/gkae214.
In mice, transcription from the zygotic genome is initiated at the mid-one-cell stage, and occurs promiscuously in many areas of the genome, including intergenic regions. Regulated transcription from selected genes is established during the two-cell stage. This dramatic change in the gene expression pattern marks the initiation of the gene expression program and is essential for early development. We investigated the involvement of the histone variants H3.1/3.2 in the regulation of changes in gene expression pattern during the two-cell stage. Immunocytochemistry analysis showed low nuclear deposition of H3.1/3.2 in the one-cell stage, followed by a rapid increase in the late two-cell stage. Where chromatin structure is normally closed between the one- and two-cell stages, it remained open until the late two-cell stage when H3.1/3.2 were knocked down by small interfering RNA. Hi-C analysis showed that the formation of the topologically associating domain was disrupted in H3.1/3.2 knockdown (KD) embryos. Promiscuous transcription was also maintained in the late two-cell stage in H3.1/3.2 KD embryos. These results demonstrate that H3.1/3.2 are involved in the initial process of the gene expression program after fertilization, through the formation of a closed chromatin structure to execute regulated gene expression during the two-cell stage.
在小鼠中,合子基因组的转录起始于一细胞中期,并在基因组的许多区域随机发生,包括基因间区域。在二细胞阶段,有选择的基因的转录被调控。这种基因表达模式的巨大变化标志着基因表达程序的启动,对早期发育至关重要。我们研究了组蛋白变体 H3.1/3.2 在二细胞阶段基因表达模式变化的调控中的作用。免疫细胞化学分析显示,H3.1/3.2 在一细胞阶段的核内沉积较低,随后在晚期二细胞阶段迅速增加。在一细胞和二细胞阶段之间,染色质结构通常是封闭的,但在 H3.1/3.2 被小干扰 RNA 敲低的晚期二细胞阶段仍然是开放的。Hi-C 分析显示,拓扑关联域的形成在 H3.1/3.2 敲低(KD)胚胎中被破坏。在 H3.1/3.2 KD 胚胎中,晚期二细胞阶段的随机转录也得以维持。这些结果表明,H3.1/3.2 通过形成封闭的染色质结构,参与受精后基因表达程序的初始过程,在二细胞阶段执行有调控的基因表达。