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FTO相关的破骨细胞生成通过HK1/USP14/RANK途径促进根尖周炎雄性大鼠的牙槽骨吸收。

FTO-associated osteoclastogenesis promotes alveolar bone resorption in apical periodontitis male rat via the HK1/USP14/RANK pathway.

作者信息

Qian Yajie, Wu Jing, Yang Weidong, Lyu Ruining, You Qiao, Li Jingjing, He Qin, Zhuang Yuan, Wang Wenmei, Wang Yong, Zhu Yanan, Wu Zhiwei, Chen Deyan

机构信息

Nanjing Stomatological Hospital, Affiliated Hospital of Medical School, Institute of Stomatology, Nanjing University, Nanjing, China.

Medical School of Nanjing University, Nanjing, China.

出版信息

Nat Commun. 2025 Feb 11;16(1):1519. doi: 10.1038/s41467-025-56615-1.

Abstract

Alveolar bone resorption (ABR) is a key pathological manifestation in the development of apical periodontitis (AP) and contributes to the AP-associated tooth loss among AP patients in the clinic. However, the underlying mechanism of ABR development is largely unknown. Here we show, the total levels of N6-methyladenosine (mA) were reduced in AP male rat alveolar bone tissues and BMDM-derived osteoclasts (OC), which was associated with the up-regulation of obesity-associated protein (FTO). Subsequently FTO-mediated hexokinase (HK1) demethylation modification enhancing glycolytic pathway that stabilizes receptor activator of NF-κB (RANK) protein via the deubiquitination activity of ubiquitin-specific protease 14 (USP14), which further promotes osteoclastogenesis to participate in the AP-related ABR development. Finally, Dac51 (an FTO inhibitor) and 2-DG (an HK1 inhibitor) both exhibit the inhibitory activity of osteoclastogenesis. Our current study reveals a molecular mechanism on osteoclastogenesis-related ABR and provides a therapeutic target of AP via modulating the FTO/HK1/USP14/RANK axis.

摘要

牙槽骨吸收(ABR)是根尖周炎(AP)发展过程中的关键病理表现,也是临床上导致AP患者牙齿缺失的原因。然而,ABR发生发展的潜在机制在很大程度上尚不清楚。在此我们发现,AP雄性大鼠牙槽骨组织和BMDM来源的破骨细胞(OC)中N6-甲基腺苷(mA)的总水平降低,这与肥胖相关蛋白(FTO)的上调有关。随后,FTO介导的己糖激酶(HK1)去甲基化修饰增强了糖酵解途径,该途径通过泛素特异性蛋白酶14(USP14)的去泛素化活性稳定核因子κB受体激活剂(RANK)蛋白,进而促进破骨细胞生成,参与AP相关的ABR发展。最后,Dac51(一种FTO抑制剂)和2-DG(一种HK1抑制剂)均表现出抑制破骨细胞生成的活性。我们目前的研究揭示了破骨细胞生成相关ABR的分子机制,并通过调节FTO/HK1/USP14/RANK轴为AP提供了一个治疗靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d89b/11814306/4eefee4d1ae8/41467_2025_56615_Fig1_HTML.jpg

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