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首页> 外文期刊>Neuroscience Letters: An International Multidisciplinary Journal Devoted to the Rapid Publication of Basic Research in the Brain Sciences >Interaction of fibroblast growth factor 2 (FGF2) and notch signaling components in inhibition of oligodendrocyte progenitor (OP) differentiation.
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Interaction of fibroblast growth factor 2 (FGF2) and notch signaling components in inhibition of oligodendrocyte progenitor (OP) differentiation.

机译:成纤维细胞生长因子2(FGF2)和Notch信号组件在抑制少突胶质祖细胞(OP)分化中的相互作用。

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摘要

Oligodendrocyte progenitor (OP) cell differentiation is a critical process of developmental myelination, tumor formation, and remyelination in the CNS. Activation of the fibroblast growth factor 2 (FGF2) or notch pathway can inhibit differentiation of OP cells. The current study examines the interaction of FGF2 and notch signaling components in regulating OP differentiation. Cultured neonatal rat brain OP cells were used for transfection-based promoter assays and for infection with retroviruses expressing a GFP reporter to monitor OP differentiation into oligodendrocytes or astrocytes. FGF2 treatment resulted in a four-fold increase of transcriptional activity from the promoter region of Hes5, a notch pathway target gene. FGF2 inhibition of OP differentiation into oligodendrocytes was perturbed by retroviral expression of a dominant negative construct for mastermind-like 1, which is an important co-activator of transcription for notch target genes. OP differentiation into oligodendrocytes was reduced by co-culture with fibroblasts expressing Jagged1, a ligand for notch receptors. This Jagged1 inhibition of OP differentiation was not altered by retroviral expression of a dominant negative FGF receptor construct. Constitutive activation of notch signaling, by retroviral expression of the Notch1 intracellular domain, greatly reduced OP differentiation into either oligodendrocytes or astrocytes and did not require FGF2 signaling. These findings indicate that inhibition of OP differentiation through the Notch1 pathway was not influenced by FGF2 signaling. However, FGF2 signaling may interact with down stream components of the notch signaling pathway, including mastermind-like1 and Hes5, to inhibit OP differentiation into oligodendrocytes.
机译:少突胶质祖细胞(OP)的分化是中枢神经系统发育髓鞘形成,肿瘤形成和髓鞘再生的关键过程。成纤维细胞生长因子2(FGF2)或缺口途径的激活可以抑制OP细胞的分化。当前的研究检查了FGF2和Notch信号组分在调节OP分化中的相互作用。培养的新生大鼠脑OP细胞用于基于转染的启动子测定,并用于表达GFP报告基因的逆转录病毒感染,以监测OP向少突胶质细胞或星形胶质细胞的分化。 FGF2处理导致刻槽途径靶基因Hes5的启动子区域的转录活性增加了四倍。逆转录病毒表达的mastermind-like 1的显性负性构建体逆转录病毒表达干扰了FGF2对OP分化为少突胶质细胞的抑制,而该构建体是缺口靶基因转录的重要共激活因子。通过与表达Jagg​​ed1(一种Notch受体的配体)的成纤维细胞共培养,可减少OP向少突胶质细胞的分化。逆转录病毒表达的显性负性FGF受体构建体不会改变OP对Jagged1的抑制作用。 Notch1细胞内结构域的逆转录病毒表达可组成性激活Notch信号,大大降低OP分化为少突胶质细胞或星形胶质细胞,不需要FGF2信号。这些发现表明,通过Notch1途径抑制OP分化不受FGF2信号转导的影响。但是,FGF2信号传导可能会与notch信号传导通路的下游成分(包括mastermind-like1和Hes5)相互作用,从而抑制OP分化为少突胶质细胞。

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