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RNA聚合酶2沉积对转座元件的全基因组H3K4me3分布及转录调控

H3K4me3 Genome-Wide Distribution and Transcriptional Regulation of Transposable Elements by RNA Pol2 Deposition.

作者信息

Chen Xiaowei, Yang Hua, Wang Liqin, Chen Ying, Yang Yingnan, Chen Haonan, Wang Feng, Zhang Yanli, Deng Mingtian

机构信息

Jiangsu Livestock Embryo Engineering Laboratory, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing 210095, China.

Key Laboratory of Genetics Breeding and Reproduction of Grass Feeding Livestock, Ministry of Agriculture and Rural Affairs, Urumqi 830000, China.

出版信息

Int J Mol Sci. 2024 Dec 18;25(24):13545. doi: 10.3390/ijms252413545.

Abstract

Zygotic genome activation (ZGA) is critical for early embryo development and is meticulously regulated by epigenetic modifications. H3K4me3 is a transcription-permissive histone mark preferentially found at promoters, but its distribution across genome features remains incompletely understood. In this study, we investigated the genome-wide enrichment of H3K4me3 during early embryo development and embryonic stem cells (ESCs) in both sheep and mice. We discovered that broad H3K4me3 domains were present in MII stage oocytes and were progressively diminished, while promoter H3K4me3 enrichment was increased and correlated with gene upregulation during ZGA in sheep. Additionally, we reported the dynamic distribution of H3K4me3 at the transposable elements (TEs) during early embryo development in both sheep and mice. Specifically, the H3K4me3 distribution of LINE1 and ERVL, two subsets of TEs, was associated with their expression during early embryo development in sheep. Furthermore, H3K4me3 enrichment in TEs was greatly increased during ZGA following Kdm5b knockdown, and the distribution of RNA polymerase II (Pol2) in TEs was also markedly increased in Kdm5b knockout ESCs in mice. These findings suggest that H3K4me3 plays important roles in regulating TE expression through interaction with RNA Pol2, providing valuable insights into the regulation of ZGA initiation and cell fate determination by H3K4me3.

摘要

合子基因组激活(ZGA)对早期胚胎发育至关重要,并受到表观遗传修饰的精细调控。H3K4me3是一种优先在启动子区域发现的转录许可组蛋白标记,但其在全基因组特征上的分布仍未完全清楚。在本研究中,我们调查了绵羊和小鼠早期胚胎发育过程中以及胚胎干细胞(ESC)中H3K4me3在全基因组范围内的富集情况。我们发现,在MII期卵母细胞中存在广泛的H3K4me3结构域,且这些结构域逐渐减少,而在绵羊的ZGA过程中,启动子区域的H3K4me3富集增加并与基因上调相关。此外,我们报道了绵羊和小鼠早期胚胎发育过程中转座元件(TE)上H3K4me3的动态分布。具体而言,TE的两个亚类LINE1和ERVL的H3K4me3分布与绵羊早期胚胎发育过程中的表达相关。此外,在Kdm5b敲低后,ZGA期间TE中的H3K4me3富集大幅增加,并且在小鼠的Kdm5b基因敲除ESC中,TE中RNA聚合酶II(Pol2)的分布也显著增加。这些发现表明,H3K4me3通过与RNA Pol2相互作用在调节TE表达中发挥重要作用,为H3K4me3对ZGA起始和细胞命运决定的调控提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/005e/11677803/2380f28c3f06/ijms-25-13545-g001.jpg

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