Department of Orthopedics, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Department of Rehabilitation, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Aging (Albany NY). 2020 Feb 25;12(4):3976-3992. doi: 10.18632/aging.102866.
Bone marrow mesenchymal stem cells (BMSCs) differentiation dysfunction is a common pathological phenotype of several prevalent metabolic and genetic bone diseases. Pyruvate kinase muscle isoenzyme 2 (PKM2) regulates the last step of glycolysis, and its role in BMSCs differentiation is still unknown. In this study, the influence of PKM2 on osteogenesis and adipogenesis was assessed in vitro and in vivo. We found that DASA-58 (the activator of PKM2) reduced the enzymatic activity of ALP, and inhibited the levels of osteogenic marker genes, especially RUNX2, which is a crucial transcription factor for osteogenesis. Besides, we provided evidence that C3k, an inhibitor of PKM2, caused increase in mitochondrial membrane potential and maintained low levels of ROS, and promoted mitochondrial fusion. Furthermore, after treatment with DASA-58, the level of active β-catenin gradually decreased, which also inhibited the transport of active β-catenin into the nucleus, but C3k obviously promoted its nuclear translocation. As for adipogenesis, PKM2 activation increased the expression of adipogenic related genes and decreased active-β-catenin expression, whereas treatment of C3k had the opposite effect. In addition, C3k significantly attenuated ovariectomy-induced trabecular bone loss in vivo. Our findings helped uncover the molecular mechanisms underlying PKM2 regulation of BMSCs differentiation.
骨髓间充质干细胞(BMSCs)分化功能障碍是几种常见代谢和遗传骨骼疾病的共同病理表型。丙酮酸激酶肌肉同工酶 2(PKM2)调节糖酵解的最后一步,其在 BMSCs 分化中的作用尚不清楚。在本研究中,我们在体外和体内评估了 PKM2 对成骨和脂肪生成的影响。我们发现 DASA-58(PKM2 的激活剂)降低了 ALP 的酶活性,并抑制了成骨标记基因的水平,特别是 RUNX2,它是成骨的关键转录因子。此外,我们提供的证据表明,PKM2 的抑制剂 C3k 引起线粒体膜电位增加并保持低水平的 ROS,从而促进线粒体融合。此外,在用 DASA-58 处理后,活性 β-连环蛋白的水平逐渐降低,这也抑制了活性 β-连环蛋白向核内的转运,但 C3k 明显促进了其核转位。至于脂肪生成,PKM2 的激活增加了脂肪生成相关基因的表达,降低了活性-β-连环蛋白的表达,而 C3k 的处理则产生相反的效果。此外,C3k 可显著减轻体内去卵巢引起的小梁骨丢失。我们的研究结果有助于揭示 PKM2 调节 BMSCs 分化的分子机制。