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Binary sibling neuronal cell fate decisions in the Drosophila embryonic central nervous system are nonstochastic and require inscuteable-mediated asymmetry of ganglion mother cells

机译:果蝇胚胎中枢神经系统中的二元同胞神经元细胞命运决定是随机的需要神经节母细胞的不可干预介导的不对称性

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摘要

Asymmetric cell division is a widespread mechanism in developing tissues that leads to the generation of cell diversity. In the embryonic central nervous system of Drosophila melanogaster, secondary precursor cells—ganglion mother cells (GMCs)—divide and produce postmitotic neurons that take on different cell fates. In this study, we show that binary fate decision of two pairs of sibling neurons is accomplished through the interplay of Notch (N) signaling and the intrinsic fate determinant Numb. We show that GMCs have apical–basal polarity and Numb localization and the orientation of division are coordinated to segregate Numb to only one sibling cell. The correct positioning of Numb and the proper orientation of division require Inscuteable (Insc). Loss of insc results in the generation of equivalent sibling cells. Our results provide evidence that sibling neuron fate decision is nonstochastic and normally depends on the presence of Numb in one of the two siblings. Moreover, our data suggest that the fate of some sibling neurons may be regulated by signals that do not require lateral interaction between the sibling cells.
机译:不对称细胞分裂是导致组织发展的广泛机制,可导致细胞多样性的产生。在果蝇的胚胎中枢神经系统中,次级前体细胞神经节母细胞(GMC)分裂并产生有丝分裂后的神经元,承担不同的细胞命运。在这项研究中,我们表明两对同级神经元的二进制命运决定是通过Notch(N)信号和固有命运决定因素Numb的相互作用来完成的。我们表明,GMC具有顶基极和Numb定位,并且分裂的方向被协调以将Numb隔离到一个同胞中。 Numb的正确位置和正确的分割方向需要Inscuteable(Insc)。 insc丢失会导致生成同级同胞。我们的结果提供了证据,表明兄弟姐妹的神经元命运决定是非随机的,通常取决于两个兄弟姐妹之一中Numb的存在。此外,我们的数据表明,某些兄弟神经元的命运可能受到信号的调节,而这些信号不需要兄弟细胞之间的横向相互作用。

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