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首页> 外文期刊>Cell >Temporal Patterning of Neuroblasts Controls Notch-Mediated Cell Survival through Regulation of Hid or Reaper
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Temporal Patterning of Neuroblasts Controls Notch-Mediated Cell Survival through Regulation of Hid or Reaper

机译:Neuroblasts的时间模式通过隐藏或死神的调节来控制Notch介导的细胞存活。

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摘要

Temporal patterning of neural progenitors is one of the core mechanisms generating neuronal diversity in the central nervous system. Here, we show that, in the tips of the outer proliferation center (tOPC) of the developing Drosophila optic lobes, a unique temporal series of transcription factors not only governs the sequential production of distinct neuronal subtypes but also controls the mode of progenitor division, as well as the selective apoptosis of Notch~(OFF) or Notch~(ON) neurons during binary cell fate decisions. Within a single lineage, intermediate precursors initially do not divide and generate only one neuron; subsequently, precursors divide, but their NotchON progeny systematically die through Reaper activity, whereas later, their Notch~(OFF) progeny die through Hid activity. These mechanisms dictate how the tOPC produces neurons for three different optic ganglia. We conclude that temporal patterning generates neuronal diversity by specifying both the identity and survival/death of each unique neuronal subtype.
机译:神经祖细胞的时间模式是在中枢神经系统中产生神经元多样性的核心机制之一。在这里,我们表明,在发育中的果蝇视神经叶的外部增殖中心(tOPC)的尖端,独特的时序转录因子序列不仅控制着不同神经元亚型的顺序产生,而且还控制着祖细胞分裂的模式,以及在二元细胞命运决定过程中Notch_(OFF)或Notch_(ON)神经元的选择性凋亡。在单个谱系中,中间前体最初不分裂,仅产生一个神经元;随后,前体分裂,但它们的NotchON后代通过收割者活动系统性死亡,而后来,它们的Notch_(OFF)后代通过Hid活性死亡。这些机制决定了tOPC如何为三种不同的视神经节产生神经元。我们得出的结论是,时间模式通过指定每个独特神经元亚型的身份和生存/死亡来生成神经元多样性。

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