Cui Li, Mai Zizhao, Lu Ye, Zheng Jiarong, Lin Pei, Chen Xu, Zheng Yucheng, Lin Yunfan, Guo Bing, Zhao Xinyuan
School of Stomatology, Stomatological Hospital, Southern Medical University, Guangzhou, Guangdong, China.
Division of Oral Biology and Medicine, School of Dentistry, University of California, Los Angeles, California, USA.
Int Endod J. 2025 Apr;58(4):587-603. doi: 10.1111/iej.14198. Epub 2025 Jan 15.
Effective control of mesenchymal stem cell (MSC) differentiation towards osteogenic lineages is fundamental for bone regeneration. This study elucidates the regulatory role of methyltransferase like 7A (METTL7A) in the osteogenic differentiation of MSCs.
Alkaline phosphatase staining, Alizarin Red S staining, western blotting, and in vivo studies were conducted to determine the effects of METTL7A depletion or overexpression on the osteogenic differentiation of various types of MSCs. Then the downstream signalling pathways regulated by METTL7A in MSCs were further investigated.
Our findings indicate that METTL7A expression significantly increases during the osteogenic differentiation of MSCs. Furthermore, depletion of METTL7A hindered, whereas its overexpression enhanced, the osteogenic differentiation of MSCs. Mechanistically, METTL7A influences MSC osteogenic differentiation by activating the YAP1-TEAD1 signalling pathway. It enhances YAP1 expression not only by stabilising YAP1 mRNA but also, crucially, by recruiting the eIF4F complex, thereby boosting the translation efficiency of YAP1 mRNA. Additionally, the YAP1/TEAD1 complex transcriptionally regulates METTL7A expression, creating a positive feedback loop that amplifies osteogenic differentiation.
Overall, our study uncovers a previously unknown molecular mechanism of MSC osteogenic differentiation and suggests that activating METTL7A could offer new avenues for enhancing bone regeneration.
有效控制间充质干细胞(MSC)向成骨谱系分化是骨再生的基础。本研究阐明了甲基转移酶样7A(METTL7A)在MSC成骨分化中的调节作用。
进行碱性磷酸酶染色、茜素红S染色、蛋白质印迹分析及体内研究,以确定METTL7A缺失或过表达对各类MSC成骨分化的影响。随后进一步研究METTL7A在MSC中调控的下游信号通路。
我们的研究结果表明,在MSC成骨分化过程中,METTL7A表达显著增加。此外,METTL7A的缺失会阻碍MSC的成骨分化,而过表达则会增强其成骨分化。机制上,METTL7A通过激活YAP1-TEAD1信号通路影响MSC的成骨分化。它不仅通过稳定YAP1 mRNA来增强YAP1表达,关键还通过招募eIF4F复合物,从而提高YAP1 mRNA的翻译效率。此外,YAP1/TEAD1复合物转录调控METTL7A表达,形成一个放大成骨分化的正反馈环。
总体而言,我们的研究揭示了一种此前未知的MSC成骨分化分子机制,并表明激活METTL7A可为增强骨再生提供新途径。