Osteoporosis is a prevalent systemic metabolic disease, and an imbalance in the adipogenic and osteogenic differentiation of mesenchymal stem cells (MSCs) plays a crucial role in its pathogenesis. Thus, elucidating the mechanisms that regulate MSC lineage allocation is urgently needed. METTL9 was recently characterized as a novel N1-histidine methyltransferase that performs a wide range of functions. however, the role of METTL9 in the imbalance of MSC differentiation in osteoporosis remains unclear. In this study, we found that METTL9 expression was downregulated in osteoporosis, and further adipogenic functional experiments revealed that METTL9 negatively regulated the adipogenic differentiation of MSCs both in vitro and in vivo. Mechanistically, METTL9 mediated methylation of SLC39A7 at the His45 and His49 residues suppressed ferroptosis through the endoplasmic reticulum (ER) stress regulatory protein kinase R-like endoplasmic reticulum kinase (PERK)/ATF4 signaling pathway and the downstream protein SLC7A11. Moreover, SLC7A11 transported cystine for intracellular glutathione synthesis, eliminating intracellular reactive oxygen species (ROS) and inhibiting MSC adipogenic differentiation. Additionally, METTL9 overexpression significantly alleviated bone loss in ovariectomy (OVX) model mice. In summary, our results suggest that the METTL9/SLC39A7 axis may be a promising diagnostic and therapeutic target for osteoporosis.
METTL9 mediated N1-Histidine methylation of SLC39A7 confers ferroptosis resistance and inhibits adipogenic differentiation in mesenchymal stem cells.
METTL9 介导的 SLC39A7 的 N1-组氨酸甲基化赋予间充质干细胞抗铁死亡能力并抑制其脂肪生成分化
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作者:Jin Jiahao, Li Quanfeng, Zhang Yunhui, Ji Pengfei, Wang Xinlang, Zhang Yibin, Yuan Zihao, Jiang Jianan, Tian Guangqi, Cai Mingxi, Feng Pei, Wu Yanfeng, Wang Peng, Liu Wenjie
| 期刊: | Molecular Medicine | 影响因子: | 6.400 |
| 时间: | 2025 | 起止号: | 2025 May 26; 31(1):206 |
| doi: | 10.1186/s10020-025-01271-w | 研究方向: | 发育与干细胞、细胞生物学 |
| 信号通路: | DNA甲基化 | ||
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