Cao Yangyang, Wang Yantong, Xia Dengsheng
Laboratory of Molecular Signaling and Stem Cells Therapy, Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, School of Stomatology, Capital Medical University, No. 4 Tiantanxili, Dongcheng District, Beijing 100050, China.
Department of General Dentistry and Integrated Emergency Dental Care, Beijing Stomatological Hospital, Capital Medical University, Beijing 100050, China.
Medicina (Kaunas). 2025 Apr 29;61(5):820. doi: 10.3390/medicina61050820.
Aging-related bone loss still lacks interventions. As bone marrow-derived mesenchymal stem cells (BMSCs) undergo aging, R-loop-induced DNA replication stress impairs the osteogenic ability of BMSCs. High-mobility group A-2 (Hmga2) acts as a DNA-binding protein, and the understanding of its underlying mechanisms is crucial for developing effective preventive and therapeutic strategies. Aging mice were used as the experimental model, and mouse BMSCs were isolated from their femurs. Hmga2 was achieved through specific gene delivery methods. R-loop formation was detected using dot blotting, chromatin immunoprecipitation (ChIP), and DNA-RNA immunoprecipitation (DRIP) assays. Osteogenic differentiation was evaluated. R-loops were highly accumulated in aging BMSCs. Notably, the key regulator Hmga2 reversed the accumulation of R-loops in aging BMSCs. Hmga2 overexpression significantly decreased the senescence and improved the osteogenic differentiation of aging mBMSCs. Mechanistically, R-loop-forming sequence (RLFS) regions were confirmed in key osteogenesis-related genes, including runt-related transcription factor 2 (Runx2). Hmga2 bound to the RLFS region of Runx2 and promoted its expression by reducing the R-loop level. More, Hmga2 treatment delivered via the AAV system effectively decreased bone loss in aging mice and increased the serum bone turnover biomarkers and collagen remodeling. Our study demonstrates that Hmga2 acts as an activator of aging BMSCs, significantly promoting their osteogenic ability by eliminating the aging-induced DNA replication stress caused by R-loops. Our findings provide new insights into the mechanisms of aging-related bone loss, suggesting that Hmga2 may be a new strategy for alleviating the bone loss phenotype in aging individuals.
与衰老相关的骨质流失仍然缺乏有效的干预措施。随着骨髓间充质干细胞(BMSCs)衰老,R环诱导的DNA复制应激会损害BMSCs的成骨能力。高迁移率族蛋白A2(Hmga2)作为一种DNA结合蛋白,了解其潜在机制对于制定有效的预防和治疗策略至关重要。以衰老小鼠作为实验模型,从小鼠股骨中分离出BMSCs。通过特定的基因递送方法实现Hmga2的表达。使用斑点杂交、染色质免疫沉淀(ChIP)和DNA-RNA免疫沉淀(DRIP)分析检测R环的形成。评估成骨分化情况。R环在衰老的BMSCs中高度积累。值得注意的是,关键调节因子Hmga2可逆转衰老BMSCs中R环的积累。Hmga2过表达显著降低了衰老mBMSCs的衰老程度并改善了其成骨分化。机制上,在关键的成骨相关基因(包括 runt相关转录因子2(Runx2))中证实了R环形成序列(RLFS)区域。Hmga2与Runx2的RLFS区域结合,并通过降低R环水平促进其表达。此外,通过腺相关病毒(AAV)系统进行的Hmga2治疗有效地减少了衰老小鼠的骨质流失,并增加了血清骨转换生物标志物和胶原蛋白重塑。我们的研究表明,Hmga2作为衰老BMSCs的激活剂,通过消除由R环引起的衰老诱导的DNA复制应激,显著促进其成骨能力。我们的研究结果为与衰老相关的骨质流失机制提供了新的见解,表明Hmga2可能是减轻衰老个体骨质流失表型的一种新策略。