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组蛋白去甲基化酶 KDM5A 对人牙髓细胞成牙分化的影响。

Effect of histone demethylase KDM5A on the odontogenic differentiation of human dental pulp cells.

机构信息

Guanghua School of Stomatology, Hospital of Stomatology, Guangdong Provincial Key Laboratory of Stomatology, Sun Yat-Sen University, Guangzhou, Guangdong, P.R. China.

Guangdong Provincial Hospital of Chinese Medicine, The Second Affiliated Hospital of Guangzhou University of Chinese Medicine, Guangzhou, Guangdong, P.R. China.

出版信息

Bioengineered. 2020 Dec;11(1):449-462. doi: 10.1080/21655979.2020.1743536.

Abstract

Human dental pulp cells (hDPCs) possess the capacity to differentiate into odontoblast-like cells in response to exogenous stimuli. Histone methylation is one of the most robust epigenetic marks and is essential for the regulation of multiple cellular processes. Previous studies have shown that histone methyltransferases (HMTs) and histone demethylases (HDMs) are crucial for the osteogenic differentiation of human bone marrow, adipose tissue, and tooth tissue. However, little is known about the role of histone methylation in hDPC differentiation. Here, the expression levels of HMTs and HDMs were profiled in hDPCs undergoing odontogenic induction. Among several differentially expressed enzymes, HDM KDM5A demonstrated significantly enhanced expression during cytodifferentiation. Furthermore, KDM5A expression increased during early passages and in a time-dependent manner during odontogenic induction. Using a shRNA-expressing lentivirus, KDM5A was knocked down in hDPCs. KDM5A depletion resulted in greater alkaline phosphatase activity and more mineral deposition formation. Meanwhile, the expression levels of the odontogenic markers DMP1, DSPP, OSX, and OCN were increased by KDM5A knockdown. As a histone demethylase specific for tri- and dimethylated histone H3 at lysine 4 (H3K4me3/me2), KDM5A deficiency led to a significant increment in total H3K4me3 levels, whereas no significant difference was found for H3K4 me2. H3K4me3 levels on the promoters of the odontogenic markers increased after KDM5A knockdown in hDPCs. These results demonstrated that KDM5A is present in hDPCs and inhibits the odontogenic differentiation potentiality of hDPCs by removing H3K4me3 from specific gene promoters, suggesting that KDM5A-dependent histone demethylation may play an important role in reparative dentinogenesis.

摘要

牙髓细胞(hDPC)在受到外源性刺激时具有分化为成牙本质细胞样细胞的能力。组蛋白甲基化是最稳健的表观遗传标记之一,对于调节多种细胞过程至关重要。先前的研究表明,组蛋白甲基转移酶(HMTs)和组蛋白去甲基化酶(HDMs)对于人骨髓、脂肪组织和牙齿组织的成骨分化至关重要。然而,组蛋白甲基化在 hDPC 分化中的作用知之甚少。在这里,在进行牙源性诱导的 hDPC 中分析了 HMT 和 HDM 的表达谱。在几种差异表达的酶中,HDM KDM5A 在细胞分化过程中表现出明显增强的表达。此外,KDM5A 的表达在早期传代和牙源性诱导过程中呈时间依赖性增加。使用表达 shRNA 的慢病毒,在 hDPC 中敲低 KDM5A。KDM5A 耗竭导致碱性磷酸酶活性增加和更多的矿化沉积形成。同时,KDM5A 敲低后牙源性标志物 DMP1、DSPP、OSX 和 OCN 的表达水平增加。作为一种特异性针对赖氨酸 4 上三甲基和二甲基化组蛋白 H3(H3K4me3/me2)的组蛋白去甲基化酶,KDM5A 缺陷导致总 H3K4me3 水平显著增加,而 H3K4me2 没有显著差异。KDM5A 敲低后,hDPC 中成牙本质标志物启动子上的 H3K4me3 水平增加。这些结果表明,KDM5A 存在于 hDPC 中,并通过从特定基因启动子上去除 H3K4me3 来抑制 hDPC 的成牙本质分化潜能,这表明 KDM5A 依赖性组蛋白去甲基化可能在修复性牙本质形成中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afb1/7161540/d7257384df29/kbie-11-01-1743536-g002.jpg

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