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The transcription factor Nerfin-1 prevents reversion of neurons into neural stem cells

机译:转录因子Nerfin-1可防止神经元回复为神经干细胞

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Cellular dedifferentiation is the regression of a cell from a specialized state to a more multipotent state and is implicated in cancer. However, the transcriptional network that prevents differentiated cells from reacquiring stem cell fate is so far unclear. Neuroblasts (NBs), the Drosophila neural stem cells, are a model for the regulation of stem cell self-renewal and differentiation. Here we show that the Drosophila zinc finger transcription factor Nervous fingers 1 (Nerfin-1) locks neurons into differentiation, preventing their reversion into NBs. Following Prospero-dependent neuronal specification in the ganglion mother cell (GMC), a Nerfin-1-specific transcriptional program maintains differentiation in the post-mitotic neurons. The loss of Nerfin-1 causes reversion to multi-potency and results in tumors in several neural lineages. Both the onset and rate of neuronal dedifferentiation in nerfin-1 mutant lineages are dependent on Myc- and target of rapamycin (Tor)-mediated cellular growth. In addition, Nerfin-1 is required for NB differentiation at the end of neurogenesis. RNA sequencing (RNA-seq) and chromatin immunoprecipitation (ChIP) analysis show that Nerfin-1 administers its function by repression of self-renewing-specific and activation of differentiation-specific genes. Our findings support the model of bidirectional interconvertibility between neural stem cells and their post-mitotic progeny and highlight the importance of the Nerfin-1-regulated transcriptional program in neuronal maintenance.
机译:细胞去分化是细胞从专门状态向更专能状态的退化,并与癌症有关。但是,目前尚不清楚阻止分化细胞重新获得干细胞命运的转录网络。果蝇神经干细胞Neuroblasts(NBs)是调节干细胞自我更新和分化的模型。在这里,我们显示了果蝇锌指转录因子神经指1(Nerfin-1)将神经元锁定为分化状态,从而防止其恢复为NB。遵循神经节母细胞(GMC)中Prospero依赖的神经元规范,Nerfin-1特异性转录程序可维持有丝分裂后神经元的分化。 Nerfin-1的缺失会导致多能性恢复,并导致多个神经系的肿瘤。 nerfin-1突变谱系中神经元去分化的发生和速率均取决于Myc和雷帕霉素(Tor)介导的细胞生长的靶标。此外,在神经发生末期,NB分化需要Nerfin-1。 RNA测序(RNA-seq)和染色质免疫沉淀(ChIP)分析表明,Nerfin-1通过抑制自我更新特异性基因和分化特异性基因的激活来发挥其功能。我们的发现支持神经干细胞与其有丝分裂后代之间双向双向转换的模型,并强调了Nerfin-1调控的转录程序在神经元维持中的重要性。

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