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首页> 外文期刊>Molecular Neurobiology >Turning Death to Growth: Hematopoietic Growth Factors Promote Neurite Outgrowth through MEK/ERK/p53 Pathway
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Turning Death to Growth: Hematopoietic Growth Factors Promote Neurite Outgrowth through MEK/ERK/p53 Pathway

机译:转向生长:造血生长因素通过MEK / ERK / P53途径促进神经突越野

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摘要

Stem cell factor (SCF) and granulocyte colony-stimulating factor (G-CSF) are the essential hematopoietic growth factors to control hematopoiesis. However, the role of SCF and G-CSF in the central nervous system remains poorly understood. Here, we have demonstrated the involvement of MEK/ERK/p53 signaling in SCF + G-CSF-enhanced neurite extension. Cortical neurons dissected from embryonic rat brains were seeded onto the membranes of transwell inserts, and neurite outgrowth was determined by using both the neurite outgrowth quantification assay kit and immunostaining of beta III tubulin. Quantitative RT-PCR and western blotting were used for determining gene and protein expression of ERK and p53, respectively. p53 small interfering RNA (siRNAs) were introduced into neurons for examining the involvement of p53 in SCF + G-CSF-mediated neurite outgrowth. We observed that both SCF and G-CSF alone increased activation of MEK/ERK and gene expression of p53, while SCF + G-CSF synergistically activated the MEK/ERK signaling and upregulated p53 expression. MEK specific inhibitors (PD98059 and U0126) blocked the SCF + G-CSF-increased ERK phosphorylation and p53 gene and protein expression, and the MEK specific inhibitors also eliminated the SCF + G-CSF-promoted neurite outgrowth. p53 siRNAs knocked down the SCF + G-CSF-elevated p53 protein and prevented the SCF + G-CSF-enhanced neurite outgrowth. These findings suggest that activation of MEK/ERK/p53 signaling is required for SCF + G-CSF-promoted neurite outgrowth. Through the pro-apoptotic pathway of the MEK/ERK/p53, SCF + G-CSF turns neuronal fate from apoptotic commitment toward neural network generation. This observation provides novel insights into the putative role of SCF + G-CSF in supporting generation of neural connectivity during CNS development and in brain repair under pathological or neurodegenerative conditions.
机译:干细胞因子(SCF)和粒细胞菌落刺激因子(G-CSF)是控制血液缺陷的基本造血生长因子。然而,SCF和G-CSF在中枢神经系统中的作用仍然明白很差。在这里,我们已经证明了MEK / ERK / P53信号传导在SCF + G-CSF增强的神经突延伸中的参与。将从胚胎大鼠大脑中沉积的皮质神经元接种到Transwell插入件的膜上,通过使用βIII管蛋白的神经沸石过多定量测定试剂盒和免疫染色来测定神经突的过度。定量RT-PCR和Western印迹分别用于测定ERK和P53的基因和蛋白质表达。将P53小干扰RNA(SIRNA)引入神经元中,用于检查P53在SCF + G-CSF介导的神经突幼苗中的参与。我们观察到SCF和G-CSF的单独激活MEK / ERK和P53的基因表达,而SCF + G-CSF协同激活MEK / ERK信号传导和上调的P53表达。 MEK特异性抑制剂(PD98059和U0126)阻断了SCF + G-CSF增加的ERK磷酸化和P53基因和蛋白质表达,并且MEK特异性抑制剂也消除了SCF + G-CSF促进的神经突遗传。 P53 siRNA击落了SCF + G-CSF升高的P53蛋白,并预防SCF + G-CSF增强的神经突差异。这些发现表明,SCF + G-CSF促进的神经突遗传需要激活MEK / ERK / P53信号传导。通过MEK / ERK / P53的促凋亡途径,SCF + G-CSF将神经元命运从对神经网络产生的凋亡承诺转变。该观察结果为SCF + G-CSF在CNS开发期间和脑修复期间支持神经连接的产生的推定作用,提供了新的洞察力。

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