首页> 外文期刊>Progress in Neuro-Psychopharmacology & Biological Psychiatry: An International Research, Review and News Journal >Carbamoylated erythropoietin induces a neurotrophic gene profile in neuronal cells
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Carbamoylated erythropoietin induces a neurotrophic gene profile in neuronal cells

机译:氨基甲酰胺促红细胞生成素在神经元细胞中诱导神经营养基因谱

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Erythropoietin (EPO), a cytokine molecule, is best-known for its role in erythropoiesis. Preclinical studies have demonstrated that EPO has robust neuroprotective effects that appear to be independent of erythropoiesis. It is also being clinically tested for the treatment of neuropsychiatric illnesses due to its behavioral actions. A major limitation of EPO is that long-term administration results in excessive red blood cell production and increased blood viscosity. A chemical modification of EPO, carbamoylated erythropoietin (CEPO), reproduces the behavioral response of EPO in animal models but does not stimulate erythropoiesis. The molecular mechanisms involved in the behavioral effects of CEPO are not known. To obtain molecular insight we examined CEPO induced gene expression in neuronal cells. PC-12 cells were treated with CEPO followed by genome-wide microarray analysis. We investigated the functional significance of the gene profile by unbiased bioinformatics analysis. The Ingenuity pathway analysis (IPA) software was employed. The results revealed activation of functions such as neuronal number and long-term potentiation. Regulated signaling cascades included categories such as neurotrophin, CREB, NGF and synaptic long-term potentiation signaling. Some of the regulated genes from these pathways are CAMKII, EGR1, FOS, GRIN1, KIF1B, NOTCH1. We also comparatively examined EPO and CEPO-induced gene expression for a subset of genes in the rat dentate gyrus. The CEPO gene profile shows the induction of genes and signaling cascades that have roles in neurogenesis and memory formation, mechanisms that can produce antidepressant and cognitive function enhancing activity.
机译:促红细胞生成素(EPO)是一种细胞因子分子,以其在促红细胞产物中的作用最为熟悉。临床前研究表明,EPO具有稳健的神经保护作用,似乎与促红细胞生成症状。由于其行为行为,它也在临床上进行临床治疗神经精神疾病。 EPO的一个主要限制是长期给药导致过量的红细胞产生和增加的血液粘度。 EPO的化学改性,氨基甲酰胺促红细胞生成素(CEPO),再现了动物模型中EPO的行为应答,但不刺激促红细胞生成。涉及CEPO的行为效应的分子机制是未知的。为了获得分子洞察力,我们检查了CEPO诱导神经元细胞中的基因表达。用CEPO处理PC-12细胞,然后进行基因组微阵列分析。我们通过无偏生物信息分析研究了基因谱的功能意义。采用了Ingenuey途径分析(IPA)软件。结果揭示了神经元数和长期增强等功能的激活。调节信号级联包括神经营养蛋白,CREB,NGF和突触长期增强信号等类别。来自这些途径的一些受监管基因是Camkii,EGR1,FOS,GRIN1,KIF1B,NOTCH1。我们还对大鼠齿状回物中的基因子集进行了相对较慢地研究了EPO和CEPO诱导的基因表达。 CEPO基因谱表明,基因和信号传导级联的诱导具有神经发生和记忆形成的作用,可以产生抗抑郁药和认知功能增强活性的机制。

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