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小鼠减数分裂中期II期卵母细胞中H3K4me3的特征分析。

Characterization of H3K4me3 in mouse oocytes at the metaphase II stage.

作者信息

Takasu Atsushi, Hino Toshiaki, Takenouchi Osamu, Miyagawa Yasuki, Liang Zhihua, Tanaka Shota, Mimura Tomoya, Ida Chisato, Matsuo Yuki, Lee Yuna, Ikegami Haruka, Ohsugi Miho, Matoba Shogo, Ogura Atsuo, Yamagata Kazuo, Matsumoto Kazuya, Kitajima Tomoya S, Miyamoto Kei

机构信息

Faculty of Biology-Oriented Science and Technology, Kindai University, Wakayama, Japan.

Department of Biological Sciences, Asahikawa Medical University, Asahikawa, Japan.

出版信息

J Biol Chem. 2025 May 29;301(7):110308. doi: 10.1016/j.jbc.2025.110308.

Abstract

Central functions of histone modifications in germ cell and embryonic development have been documented. Accumulating evidence suggests that oocytes possess unique profiles of histone modifications, among which histone H3 lysine 4 trimethylation (H3K4me3) is broadly spread on the mouse oocyte chromosomes at the metaphase II (MII) stage, unlike later embryonic stages. However, the characteristics and developmental roles of H3K4me3 on MII chromosomes are unclear. Here, we discovered that H3K4me3 was abundantly localized on some of the MII oocyte chromosomes facing the cortical side. Using multicolor FISH and CRISPR-Sirius-based labeling of chromosomes, we revealed that the X chromosome tended to be localized at the cortical side with strong H3K4me3 signals. Anchoring oocyte chromosomes to the cortex may play a role in the asymmetric H3K4me3 distribution. Furthermore, we found that the forced removal of H3K4me3 through the overexpression of a specific lysine demethylase in MII oocytes resulted in abnormal chromosome-spindle structure and impaired preimplantation development after in vitro fertilization. These findings highlight the developmental function of H3K4me3 in transcriptionally silent MII oocytes.

摘要

组蛋白修饰在生殖细胞和胚胎发育中的核心功能已有文献记载。越来越多的证据表明,卵母细胞具有独特的组蛋白修饰谱,其中组蛋白H3赖氨酸4三甲基化(H3K4me3)在中期II(MII)阶段广泛分布于小鼠卵母细胞染色体上,这与后期胚胎阶段不同。然而,H3K4me3在MII染色体上的特征和发育作用尚不清楚。在这里,我们发现H3K4me3大量定位于一些面向皮质侧的MII卵母细胞染色体上。使用多色荧光原位杂交和基于CRISPR-Sirius的染色体标记,我们发现X染色体倾向于定位于具有强H3K4me3信号的皮质侧。将卵母细胞染色体锚定到皮质可能在H3K4me3的不对称分布中起作用。此外,我们发现通过在MII卵母细胞中过表达特定的赖氨酸去甲基化酶来强制去除H3K4me3会导致染色体纺锤体结构异常,并损害体外受精后的植入前发育。这些发现突出了H3K4me3在转录沉默的MII卵母细胞中的发育功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bbd4/12240069/7284fcc64183/gr1.jpg

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