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Cellular and Molecular Mechanisms Mediated by recPrPC Involved in the Neuronal Differentiation Process of Mesenchymal Stem Cells

机译:recPrPC介导的细胞和分子机制参与间充质干细胞的神经元分化过程。

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摘要

Human Dental Pulp Stem Cells (hDPSCs) represent a type of adult mesenchymal stem cells that have the ability to differentiate in vitro in several lineages such as odontoblasts, osteoblasts, chondrocytes, adipocytes and neurons. In the current work, we used hDPSCs as the experimental model to study the role of recombinant prion protein 23–231 (recPrPC) in the neuronal differentiation process, and in the signal pathway activation of ERK 1/2 and Akt. We demonstrated that recPrPC was able to activate an intracellular signal pathway mediated by extracellular-signal-regulated kinase 1 and 2 (ERK 1/2) and protein kinase B (Akt). Moreover, in order to understand whether endogenous prion protein (PrPC) was necessary to mediate the signaling induced by recPrPC, we silenced PrPC, demonstrating that the presence of endogenous PrPC was essential for ERK 1/2 and Akt phosphorylation. Since endogenous PrPC is a well-known lipid rafts component, we evaluated the role of these structures in the signal pathway induced by recPrPC. Our results suggest that lipid rafts integrity play a key role in recPrPC activity. In fact, lipid rafts inhibitors, such as fumonisin B1 and MβCD, significantly prevented ERK 1/2 and Akt phosphorylation induced by recPrPC. In addition, we investigated the capacity of recPrPC to induce hDPSCs neuronal differentiation process after long-term stimulation through the evaluation of typical neuronal markers expression such as B3-Tubulin, neurofilament-H (NFH) and growth associated protein 43 (GAP43). Accordingly, when we silenced endogenous PrPC, we observed the inhibition of neuronal differentiation induced by recPrPC. The combined data suggest that recPrPC plays a key role in the neuronal differentiation process and in the activation of specific intracellular signal pathways in hDPSCs.
机译:人牙髓干细胞(hDPSC)代表一类成人间充质干细胞,它们具有体外分化能力,可在多种谱系(例如成牙本质细胞,成骨细胞,软骨细胞,脂肪细胞和神经元)中分化。在目前的工作中,我们使用hDPSCs作为实验模型来研究重组病毒蛋白23–231(recPrP C )在神经元分化过程中以及在ERK 1 /的信号途径激活中的作用。 2和Akt。我们证明recPrP C 能够激活由细胞外信号调节的激酶1、2(ERK 1/2)和蛋白激酶B(Akt)介导的细胞内信号通路。此外,为了了解是否需要内源性ion病毒蛋白(PrP C )来介导recPrP C 诱导的信号传导,我们沉默了PrP C ,表明内源性PrP C 的存在对于ERK 1/2和Akt磷酸化至关重要。由于内源性PrP C 是众所周知的脂质筏成分,因此我们评估了这些结构在recPrP C 诱导的信号通路中的作用。我们的结果表明脂质筏的完整性在recPrP C 活性中起关键作用。实际上,脂质筏抑制剂,如伏马毒素B1和MβCD,可显着阻止recPrP C 诱导的ERK 1/2和Akt磷酸化。此外,我们通过评估典型的神经元标志物表达,例如B3-微管蛋白,神经丝-H(NFH)和生长,研究了recPrP C 在长期刺激后诱导hDPSCs神经元分化过程的能力。相关蛋白43(GAP43)。因此,当我们沉默内源性PrP C 时,我们观察到了recPrP C 诱导的神经元分化受到抑制。综合数据表明,recPrP C 在神经元分化过程和hDPSCs中特定细胞内信号通路的激活中起关键作用。

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