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bHLH 家族蛋白控制神经上皮细胞向神经干细胞过渡的时间和完成。

bHLH family proteins control the timing and completion of transition from neuroepithelial cells into neural stem cells.

机构信息

Laboratory of Developmental Biology and Physiology, Division of Science, Graduate School of Science and Engineering, Ibaraki University, 1-1-2 Bunkyo, Mito 310-8512, Japan.

Laboratory of Developmental Biology and Physiology, College of Science, Ibaraki University, 1-1-2 Bunkyo, Mito 310-8512, Japan.

出版信息

Development. 2024 Sep 15;151(18). doi: 10.1242/dev.202630. Epub 2024 Sep 16.

Abstract

The number of neural stem cells reflects the total number of neurons in the mature brain. As neural stem cells arise from neuroepithelial cells, the neuroepithelial cell population must be expanded to secure a sufficient number of neural stem cells. However, molecular mechanisms that regulate timely differentiation from neuroepithelial to neural stem cells are largely unclear. Here, we show that TCF4/Daughterless is a key factor that determines the timing of the differentiation in Drosophila. The neuroepithelial cells initiated but never completed the differentiation in the absence of TCF4/Daughterless. We also found that TCF4/Daughterless binds to the Notch locus, suggesting that Notch is one of its downstream candidate genes. Consistently, Notch expression was ectopically induced in the absence of TCF4/Daughterless. Furthermore, ectopic activation of Notch signaling phenocopied loss of TCF4/Daughterless. Our findings demonstrate that TCF4/Daughterless directly inactivates Notch signaling pathway, resulting in completion of the differentiation from neuroepithelial cells into neural stem cells with optimal timing. Thus, the present results suggest that TCF4/Daughterless is essential for determining whether to move to the next state or stay in the current state in differentiating neuroepithelial cells.

摘要

神经干细胞的数量反映了成熟脑中神经元的总数。由于神经干细胞来源于神经上皮细胞,因此必须扩大神经上皮细胞群体以确保有足够数量的神经干细胞。然而,调节神经上皮细胞向神经干细胞及时分化的分子机制在很大程度上尚不清楚。在这里,我们显示 TCF4/Daughterless 是决定果蝇分化时间的关键因素。在没有 TCF4/Daughterless 的情况下,神经上皮细胞开始但从未完成分化。我们还发现 TCF4/Daughterless 与 Notch 基因座结合,表明 Notch 是其下游候选基因之一。一致地,在没有 TCF4/Daughterless 的情况下,Notch 表达被异位诱导。此外,Notch 信号通路的异位激活模拟了 TCF4/Daughterless 的缺失表型。我们的研究结果表明,TCF4/Daughterless 直接使 Notch 信号通路失活,导致神经上皮细胞向神经干细胞的分化在最佳时间完成。因此,这些结果表明 TCF4/Daughterless 对于确定分化中的神经上皮细胞是进入下一个状态还是保持在当前状态是必不可少的。

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