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Ezh2 依赖性 H3K27me3 修饰动态调节骨细胞中维生素 D3 依赖性 CYP24A1 基因表达的表观遗传控制。

Ezh2-dependent H3K27me3 modification dynamically regulates vitamin D3-dependent epigenetic control of CYP24A1 gene expression in osteoblastic cells.

机构信息

Institute of Biomedical Sciences and FONDAP Center for Genome Regulation, Faculty of Medicine and Faculty of Life Sciences, Universidad Andres Bello, Santiago, Chile.

Department of Biological Sciences, Faculty of Life Sciences, Universidad Andres Bello, Concepcion, Chile.

出版信息

J Cell Physiol. 2020 Jun;235(6):5404-5412. doi: 10.1002/jcp.29428. Epub 2020 Jan 7.

Abstract

Epigenetic control is critical for the regulation of gene transcription in mammalian cells. Among the most important epigenetic mechanisms are those associated with posttranslational modifications of chromosomal histone proteins, which modulate chromatin structure and increased accessibility of promoter regulatory elements for competency to support transcription. A critical histone mark is trimethylation of histone H3 at lysine residue 27 (H3K27me3), which is mediated by Ezh2, the catalytic subunit of the polycomb group complex PRC2 to repress transcription. Treatment of cells with the active vitamin D metabolite 1,25(OH) D , results in transcriptional activation of the CYP24A1 gene, which encodes a 24-hydroxylase enzyme, that is, essential for physiological control of vitamin D3 levels. We report that the Ezh2-mediated deposition of H3K27me3 at the CYP24A1 gene promoter is a requisite regulatory component during transcriptional silencing of this gene in osteoblastic cells in the absence of 1,25(OH) D . 1,25(OH) D dependent transcriptional activation of the CYP24A1 gene is accompanied by a rapid release of Ezh2 from the promoter, together with the binding of the H3K27me3-specific demethylase Utx/Kdm6a and thereby subsequent erasing of the H3K27me3 mark. Importantly, we find that these changes in H3K27me3 enrichment at the CYP24A1 gene promoter are highly dynamic, as this modification is rapidly reacquired following the withdrawal of 1,25(OH) D .

摘要

表观遗传控制对于哺乳动物细胞中基因转录的调节至关重要。在最重要的表观遗传机制中,有一些与染色质组蛋白的翻译后修饰有关,这些修饰可以调节染色质结构,并增加启动子调节元件的可及性,以支持转录的完成。一个关键的组蛋白标记是赖氨酸残基 27 上的组蛋白 H3 的三甲基化(H3K27me3),它由多梳组蛋白复合物 PRC2 的催化亚基 Ezh2 介导,以抑制转录。用活性维生素 D 代谢物 1,25(OH)2D 处理细胞,导致 CYP24A1 基因的转录激活,该基因编码一种 24-羟化酶,这对于生理控制维生素 D3 水平是必不可少的。我们报告说,在缺乏 1,25(OH)2D 的情况下,Ezh2 介导的 CYP24A1 基因启动子上的 H3K27me3 沉积是该基因在成骨细胞中转录沉默的必要调节成分。1,25(OH)2D 依赖性 CYP24A1 基因的转录激活伴随着 Ezh2 从启动子上的快速释放,以及 H3K27me3 特异性去甲基酶 Utx/Kdm6a 的结合,从而随后消除 H3K27me3 标记。重要的是,我们发现 CYP24A1 基因启动子上 H3K27me3 富集的这些变化是高度动态的,因为在 1,25(OH)2D 撤出后,这种修饰很快就被重新获得。

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