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Sox9 modulates cell survival and adipogenic differentiation of multipotent adult rat mesenchymal stem cells

机译:Sox9调节多能成年大鼠间充质干细胞的细胞存活和成脂分化

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Sox9 is a key transcription factor in early chondrogenesis with distinct roles in differentiation processes and during embryonic development. Here, we report that Sox9 modulates cell survival and contributes to the commitment of mesenchymal stem cells (MSC) to adipogenic or osteogenic differentiation lineages. We found that the Sox9 activity level affects the expression of the key transcription factor in adipogenic differentiation, C/EBPp and that cyclin D1 mediates the expression of the osteogenic marker osteocalcin in undifferentiated adult bone-marrow-derived rat MSC. Introducing a stable Sox9 knockdown into undifferentiated rat MSC resulted in a marked decrease in proliferation rate and an increase in apoptotic activity. This was linked to a profound upregulation of p21 and cyclin D1 gene and protein expression accompanied by an induction of caspase 3/7 activity and an inhibition of Bcl-2. We observed that Sox9 silencing provoked a delayed S-phase progression and an increased nuclear localization of p21. The protein stability of cyclin D1 was induced in the absence of Sox9 presumably as a function of altered p38 signalling. In addition, the major transcription factor for adipogenic differentiation, C/EBPp was repressed after silencing Sox9. The nearly complete absence of C/EBPb protein as a result of increased destabilization of the C/EBPb mRNA and the impact on osteocalcin gene expression and protein synthesis, suggests that a delicate balance of Sox9 level is not only imperative for proper chondrogenic differentiation of progenitor cells, but also affects the adipogenic and probably osteogenic differentiation pathways of MSC. Our results identified Sox9 as an important link between differentiation, proliferation and apoptosis in undifferentiated adult rat mesenchymal stem cells, emphasizing the importance of the delicate balance of a precisely regulated Sox9 activity in MSC not only for proper skeletal development during embryogenesis but probably also for successful repair and regeneration of tissues and organs in adults.
机译:Sox9是早期软骨形成过程中的关键转录因子,在分化过程和胚胎发育过程中具有独特的作用。在这里,我们报告Sox9调节细胞存活,并有助于间充质干细胞(MSC)对成脂或成骨分化谱系的承诺。我们发现Sox9活性水平影响成脂分化中关键转录因子C / EBPp1的表达,而细胞周期蛋白D1介导未分化成年骨髓源性大鼠MSC中成骨标志物骨钙素的表达。在未分化的大鼠MSC中引入稳定的Sox9敲低会导致增殖速率显着下降和凋亡活性的增加。这与p21和细胞周期蛋白D1基因和蛋白质表达的上调显着相关,并伴随caspase 3/7活性的诱导和Bcl-2的抑制。我们观察到,Sox9沉默引起了S期进程的延迟和p21核定位的增加。在不存在Sox9的情况下,诱导细胞周期蛋白D1的蛋白质稳定性可能是p38信号转导的作用。另外,沉默Sox9后,成脂分化的主要转录因子C / EBPp1被抑制。由于C / EBPb mRNA不稳定增加以及对骨钙素基因表达和蛋白质合成的影响,导致C / EBPb蛋白几乎完全不存在,这表明Sox9水平的微妙平衡不仅是祖细胞正常软骨分化的必要条件细胞,但也会影响MSC的成脂和成骨分化途径。我们的研究结果表明,Sox9是未分化的成年大鼠间充质干细胞分化,增殖和凋亡之间的重要联系,强调了精确调节MSC中Sox9活性的微妙平衡对于不仅在胚胎发生过程中适当的骨骼发育而且可能对于成功进行胚胎发育也很重要。修复成人的组织器官。

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