Genome-wide analysis of histone modifications that underlie the dynamic changes in gene expression during decidualization in human endometrial stromal cells.

IF 3.6 2区 医学 Q2 DEVELOPMENTAL BIOLOGY Molecular human reproduction Pub Date : 2023-06-30 DOI:10.1093/molehr/gaad019
Isao Tamura, Amon Shiroshita, Taishi Fujimura, Yumiko Tanaka-Doi, Yuichiro Shirafuta, Ryo Maekawa, Toshiaki Taketani, Shun Sato, Norihiro Sugino
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Abstract

Human endometrial stromal cells (hESCs) undergo a differentiation process with dramatic changes in cell functions during the menstrual cycle, which is called decidualization. This is an important event for implantation of the embryo and successful pregnancy. Defective decidualization can cause implantation failure, miscarriage, and unexplained infertility. A number of genes are upregulated or downregulated during decidualization. Recent studies have shown that epigenetic mechanisms are involved in the regulation of decidualization-related genes and that histone modifications occur throughout the genome during decidualization. The present review focuses on the involvement of genome-wide histone modifications in dramatic changes in gene expression during decidualization. The main histone modifications are the increases of H3K27ac and H3K4me3, which activate transcription. C/EBPβ works as a pioneer factor throughout the genome by recruiting p300. This is the main cause of the genome-wide acetylation of H3K27 during decidualization. Histone modifications were observed in both the proximal promoter and distal enhancer regions. Genome editing experiments show that the distal regions have transcriptional activities, which suggests that decidualization induces the interactions between proximal promoter and distal enhancer regions. Taken together, these findings show that gene regulation during decidualization is closely associated with genome-wide changes of histone modifications. This review provides new insights regarding the cases of implantation failure in terms of decidualization insufficiency owing to epigenetic dysregulation, and may lead to novel treatment options for women with implantation failure.

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组蛋白修饰的全基因组分析是人类子宫内膜间质细胞去个体化过程中基因表达动态变化的基础。
人子宫内膜基质细胞(hESCs)在月经周期中经历了一个分化过程,细胞功能发生了巨大的变化,这被称为蜕膜化。这是胚胎着床和成功妊娠的重要事件。脱个体化缺陷可导致着床失败、流产和不明原因的不孕症。在去个体化过程中,许多基因被上调或下调。最近的研究表明,表观遗传机制参与了脱个体化相关基因的调控,组蛋白修饰在脱个体化过程中发生在整个基因组中。目前的综述集中在全基因组组蛋白修饰在脱个体化过程中基因表达的巨大变化的参与。主要的组蛋白修饰是激活转录的H3K27ac和H3K4me3的增加。C/EBPβ通过募集p300在整个基因组中发挥先锋因子的作用。这是脱个体化过程中H3K27全基因组乙酰化的主要原因。在近端启动子和远端增强子区域均观察到组蛋白修饰。基因组编辑实验表明,远端区域具有转录活性,这表明去个体化诱导了近端启动子和远端增强子区域之间的相互作用。综上所述,这些发现表明,去个体化过程中的基因调控与组蛋白修饰的全基因组变化密切相关。这篇综述为由于表观遗传失调导致的脱个体化功能不全的着床失败提供了新的见解,并可能为着床失败的女性提供新的治疗选择。
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来源期刊
Molecular human reproduction
Molecular human reproduction 生物-发育生物学
CiteScore
8.30
自引率
0.00%
发文量
37
审稿时长
6-12 weeks
期刊介绍: MHR publishes original research reports, commentaries and reviews on topics in the basic science of reproduction, including: reproductive tract physiology and pathology; gonad function and gametogenesis; fertilization; embryo development; implantation; and pregnancy and parturition. Irrespective of the study subject, research papers should have a mechanistic aspect.
期刊最新文献
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