微小RNA-708-3p靶向调控赖氨酸特异性去甲基化酶1以促进牙周炎中人类牙周膜干细胞向成骨细胞分化
miR-708-3p targetedly regulates LSD1 to promote osteoblast differentiation of hPDLSCs in periodontitis.
作者信息
Shao Qing, Liu ShiWei, Zou Chen, Ai YiLong
机构信息
Department of Orthodontics, Foshan Stomatological Hospital, School of Stomatology and Medicine, Foshan University, No.5 Hebin Road, Chancheng District, Foshan, 528000, Guangdong, China.
Department of Stomatology, Foshan First People's Hospital, Foshan, 528000, Guangdong, China.
出版信息
Odontology. 2025 Jan;113(1):222-230. doi: 10.1007/s10266-024-00963-9. Epub 2024 Jul 3.
Periodontitis (PD) is a multifactorial inflammatory disease associated with periodontopathic bacteria. Lysine-specific demethylase 1 (LSD1), a type of histone demethylase, has been implicated in the modulation of the inflammatory response process in oral diseases by binding to miRNA targets. This study investigates the molecular mechanisms by which miRNA binds to LSD1 and its subsequent effect on osteogenic differentiation. First, human periodontal ligament stem cells (hPDLSCs) were isolated, cultured, and characterized. These cells were then subjected to lipopolysaccharide (LPS) treatment to induce inflammation, after which osteogenic differentiation was initiated. qPCR and western blot were employed to monitor changes in LSD1 expression. Subsequently, LSD1 was silenced in hPDLSCs to evaluate its impact on osteogenic differentiation. Through bioinformatics and dual luciferase reporter assay, miR-708-3p was predicted and confirmed as a target miRNA of LSD1. Subsequently, miR-708-3p expression was assessed, and its role in hPDLSCs in PD was evaluated through overexpression. Using chromatin immunoprecipitation (ChIP) and western blot assay, we explored the potential regulation of osterix (OSX) transcription by miR-708-3p and LSD1 via di-methylated H3K4 (H3K4me2). Finally, we investigated the role of OSX in hPDLSCs. Following LPS treatment of hPDLSCs, the expression of LSD1 increased, but this trend was reversed upon the induction of osteogenic differentiation. Silencing LSD1 strengthened the osteogenic differentiation of hPDLSCs. miR-708-3p was found to directly bind to and negatively regulate LSD1, leading to the repression of OSX transcription through demethylation of H3K4me2. Moreover, overexpression of miR-708-3p was found to promote hPDLSCs osteogenic differentiation in inflammatory microenvironment. However, the protective effect was partially attenuated by reduced expression of OSX. Our findings indicate that miR-708-3p targetedly regulates LSD1 to enhance OSX transcription via H3K4me2 methylation, ultimately promoting hPDLSCs osteogenic differentiation.
牙周炎(PD)是一种与牙周病原菌相关的多因素炎症性疾病。赖氨酸特异性去甲基化酶1(LSD1)是一种组蛋白去甲基化酶,已被证明通过与miRNA靶点结合参与口腔疾病炎症反应过程的调节。本研究探讨miRNA与LSD1结合的分子机制及其对成骨分化的后续影响。首先,分离、培养并鉴定人牙周膜干细胞(hPDLSCs)。然后用脂多糖(LPS)处理这些细胞以诱导炎症,之后启动成骨分化。采用qPCR和蛋白质印迹法监测LSD1表达的变化。随后,在hPDLSCs中沉默LSD1以评估其对成骨分化的影响。通过生物信息学和双荧光素酶报告基因检测,预测并证实miR-708-3p是LSD1的靶miRNA。随后,评估miR-708-3p的表达,并通过过表达评估其在PD患者hPDLSCs中的作用。使用染色质免疫沉淀(ChIP)和蛋白质印迹分析,我们探讨了miR-708-3p和LSD1通过二甲基化H3K4(H3K4me2)对osterix(OSX)转录的潜在调控。最后,我们研究了OSX在hPDLSCs中的作用。hPDLSCs经LPS处理后,LSD1表达增加,但在诱导成骨分化后这种趋势逆转。沉默LSD1增强了hPDLSCs的成骨分化。发现miR-708-3p直接结合并负调控LSD1,通过H3K4me2去甲基化导致OSX转录受抑制。此外,发现miR-708-3p过表达在炎症微环境中促进hPDLSCs成骨分化。然而,OSX表达降低部分减弱了这种保护作用。我们的研究结果表明,miR-708-3p通过H3K4me2甲基化靶向调节LSD1以增强OSX转录,最终促进hPDLSCs成骨分化。