The Key Laboratory of Pathobiology, College of Basic Medical Sciences, Ministry of Education, Jilin University, Changchun, 130021, Jilin, China.
Division of Orthopedics and Biotechnology, Department for Clinical Intervention and Technology (CLINTEC), Karolinska Institute, Stockholm, Sweden.
Stem Cell Res Ther. 2024 Jul 30;15(1):238. doi: 10.1186/s13287-024-03857-3.
Mesenchymal stem cells (MSCs) are one of the most widely studied adult stem cells, while MSC replicative senescence occurs with serial expansion in vitro. We determined whether miR-34a can regulate MSC senescence by directly targeting glycolytic key enzymes to influence glycolysis.
Detected the effects of miR-34a on MSC senescence and glycolytic metabolism through gene manipulation. Bioinformatics prediction and luciferase reporter assay were applied to confirm that HK1 is a direct target of miR-34a. The underlying regulatory mechanism of miR-34a targeting HK1 in MSC senescence was further explored by a cellular function recovery experiment.
In the current study, we revealed that miR-34a over-expression exacerbated senescence-associated characteristics and impaired glycolytic metabolism. Then we identified hexokinase1 (HK1) as a direct target gene of miR-34a. And HK1 replenishment reversed MSC senescence and reinforced glycolysis. In addition, miR-34a-mediated MSC senescence and lower glycolytic levels were evidently rescued following the co-treatment with HK1 over-expression.
The miR-34a-HK1 signal axis can alleviate MSC senescence via enhancing glycolytic metabolism, which possibly provides a novel mechanism for MSC senescence and opens up new possibilities for delaying and suppressing the occurrence and development of aging and age-related diseases.
间充质干细胞(MSCs)是最广泛研究的成体干细胞之一,而 MSC 复制性衰老会在体外连续扩增中发生。我们通过直接靶向糖酵解关键酶来影响糖酵解,确定 miR-34a 是否可以调节 MSC 衰老。
通过基因操作检测 miR-34a 对 MSC 衰老和糖酵解代谢的影响。生物信息学预测和荧光素酶报告基因检测实验应用于确认 HK1 是 miR-34a 的直接靶标。通过细胞功能恢复实验进一步探讨 miR-34a 靶向 MSC 衰老过程中 HK1 的潜在调节机制。
在本研究中,我们揭示了 miR-34a 的过表达加剧了与衰老相关的特征,并损害了糖酵解代谢。然后,我们确定己糖激酶 1(HK1)是 miR-34a 的直接靶基因。HK1 的补充逆转了 MSC 衰老并增强了糖酵解。此外,HK1 过表达共处理后,miR-34a 介导的 MSC 衰老和较低的糖酵解水平明显得到恢复。
miR-34a-HK1 信号轴可以通过增强糖酵解代谢来减轻 MSC 衰老,这可能为 MSC 衰老提供了一种新的机制,并为延缓和抑制衰老和与年龄相关疾病的发生和发展开辟了新的可能性。