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The characterization of gene expression during mouse neural stem cell differentiation in vitro

机译:小鼠神经干细胞体外分化过程中基因表达的表征

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摘要

Neural stem cells (NSCs) are tissue-specific, multipotent stem cells that can differentiate into three cell lineages in the central nervous system: neurons, astrocytes and oligodendrocytes. The therapeutic potential of NSCs has fueled attempts to characterize the expression of genes that regulate their fate. In this study, NSCs from embryonic day 15 (E15) mouse embryos were differentiated for 1 (DF-1) or 2 (DF-2) days, and the gene expression patterns in the NSCs and in the DF-1 and DF-2 cells were measured by microarray and real-time RT-PCR. Among the analyzed genes, 1898 genes were up-regulated in the DF-1 and DF-2 cells relative to the NSCs, whereas 1642 genes were down-regulated. The up-regulated genes included Gfap, Smad6, Fst, Tgfb2 and Cdkn2. The down-regulated genes included Ccnb1, Ccnd1 and Ccnd2. We identified gene networks that were associated with BMP and TGF-beta2 signaling pathways using Ingenuity Pathway Analysis. Our results suggest that the differentiation of E15 NSCs into astrocytes is based on a combinatorial network of various signaling pathways, including cell cycle, BMP and TGF-beta2 signaling.
机译:神经干细胞(NSC)是组织特异性的多能干细胞,可以在中枢神经系统中分化为三种细胞谱系:神经元,星形胶质细胞和少突胶质细胞。 NSC的治疗潜力激发了人们对调节其命运的基因表达进行表征的尝试。在这项研究中,胚胎第15天(E15)小鼠胚胎的NSC分化了1(DF-1)或2(DF-2)天,并且在NSC中以及DF-1和DF-2中的基因表达模式通过微阵列和实时RT-PCR测量细胞。在分析的基因中,相对于NSCs,DF-1和DF-2细胞中有1898个基因被上调,而1642个基因被下调。上调的基因包括Gfap,Smad6,Fst,Tgfb2和Cdkn2。下调的基因包括Ccnb1,Ccnd1和Ccnd2。我们使用独创性途径分析法鉴定了与BMP和TGF-beta2信号通路相关的基因网络。我们的结果表明,E15 NSCs向星形胶质细胞的分化是基于各种信号通路的组合网络,包括细胞周期,BMP和TGF-beta2信号通路。

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