Laboratory of Molecular Developmental Biology, Graduate School of Biology-Oriented Science and Technology, Kindai University, Wakayama, Japan.
Institute of Laboratory Animals, Graduate School of Medicine, Kyoto University, Kyoto, Japan.
Sci Rep. 2021 May 12;11(1):10146. doi: 10.1038/s41598-021-89334-w.
Paternal genome reprogramming, such as protamine-histone exchange and global DNA demethylation, is crucial for the development of fertilised embryos. Previously, our study showed that one of histone arginine methylation, asymmetrically dimethylated histone H3R17 (H3R17me2a), is necessary for epigenetic reprogramming in the mouse paternal genome. However, roles of histone arginine methylation in reprogramming after fertilisation are still poorly understood. Here, we report that H3R2me2s promotes global transcription at the 1-cell stage, referred to as minor zygotic genome activation (ZGA). The inhibition of H3R2me2s by expressing a histone H3.3 mutant H3.3R2A prevented embryonic development from the 2-cell to 4-cell stages and significantly reduced global RNA synthesis and RNA polymerase II (Pol II) activity. Consistent with this result, the expression levels of MuERV-L as minor ZGA transcripts were decreased by forced expression of H3.3R2A. Furthermore, treatment with an inhibitor and co-injection of siRNA to PRMT5 and PRMT7 also resulted in the attenuation of transcriptional activities with reduction of H3R2me2s in the pronuclei of zygotes. Interestingly, impairment of H3K4 methylation by expression of H3.3K4M resulted in a decrease of H3R2me2s in male pronuclei. Our findings suggest that H3R2me2s together with H3K4 methylation is involved in global transcription during minor ZGA in mice.
父源基因组重编程,如鱼精蛋白-组蛋白交换和全基因组 DNA 去甲基化,对于受精卵的发育至关重要。先前,我们的研究表明,组蛋白精氨酸甲基化之一,即不对称二甲基化组蛋白 H3R17(H3R17me2a),对于小鼠父源基因组中的表观遗传重编程是必需的。然而,组蛋白精氨酸甲基化在受精后重编程中的作用仍知之甚少。在这里,我们报告 H3R2me2s 促进了 1 细胞期的全局转录,称为微小合子基因组激活(ZGA)。通过表达组蛋白 H3.3 突变体 H3.3R2A 抑制 H3R2me2s 会阻止胚胎从 2 细胞期到 4 细胞期的发育,并显著降低全局 RNA 合成和 RNA 聚合酶 II(Pol II)活性。与这一结果一致,通过强制表达 H3.3R2A,MuERV-L 作为微小 ZGA 转录本的表达水平降低。此外,用抑制剂处理和共注射 PRMT5 和 PRMT7 的 siRNA 也导致转录活性减弱,同时受精卵原核中的 H3R2me2s 减少。有趣的是,通过表达 H3.3K4M 损害 H3K4 甲基化会导致雄性原核中 H3R2me2s 的减少。我们的研究结果表明,H3R2me2s 与 H3K4 甲基化一起参与了小鼠微小 ZGA 期间的全局转录。