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Notch activity in the nervous system: to switch or not switch?

机译:神经系统缺刻活动:要切换还是不切换?

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摘要

The Notch pathway is instrumental for cell fate diversification during development. Pioneer studies conducted in Drosophila and more recent work performed in vertebrates have shown that in the nervous system, Notch is reiteratively employed when cells choose between two alternative fates, a process referred to as a binary fate decision. While the early (neural versus epidermal) fate decisions mainly involve an inhibitory effect of Notch on the neural fate, late fate decisions (choice between different subtypes of neural cells) have been proposed to involve a binary switch activity whereby Notch would be instructive for one fate and inhibitory for the other. We re-examine this binary switch model in light of two recent findings made in the vertebrate nervous system. First, in the zebrafish epiphysis, Notch is required to resolve a mixed identity through the inhibition of one specific fate. Second, in the murine telencephalon, Notch regulates the competence of neural progenitors to respond to the JAK/STAT pathway, thereby allowing for the induction of an astrocyte fate. In neither case is Notch instructive for the alternative fate, but rather cooperates with another signalling pathway to coordinate binary fate choices. We also review current knowledge on the molecular cascades acting downstream of Notch in the context of neural subtype diversification, a crucial issue if one is to determine Notch function as an instructive, permissive or inhibitory signal in the various cellular contexts where it is implicated. Finally, we speculate as to how such a 'non-switch' activity could contribute to the expansion of neuronal subtype diversity.
机译:Notch通路在发育过程中有助于细胞命运的多样化。在果蝇中进行的先驱研究以及在脊椎动物中进行的新近研究表明,在神经系统中,当细胞在两个替代命运之间进行选择时,Notch被反复采用,这一过程被称为二元命运决定。尽管早期(神经或表皮)命运决定主要涉及Notch对神经命运的抑制作用,但有人提出后期命运决定(神经细胞不同亚型之间的选择)涉及二元转换活动,从而Notch对一个人有指导意义。命运和抑制对方。根据最近在脊椎动物神经系统中发现的两个发现,我们重新检查了这种二元开关模型。首先,在斑马鱼骨physi中,Notch需要通过抑制一种特定的命运来解决混合身份。其次,在鼠端脑中,Notch调节神经祖细胞对JAK / STAT通路作出反应的能力,从而诱导星形胶质细胞的命运。在两种情况下,Notch都不对替代性命运有启发性,而是与另一种信号通路协作以协调二元命运选择。我们还回顾了有关在神经亚型多样化的背景下作用于Notch下游的分子级联反应的当前知识,这是一个至关重要的问题,如果要确定Notch功能在涉及其的各种细胞环境中是一种指导性,允许性或抑制性信号的话。最后,我们推测这种“非转换”活动如何促进神经元亚型多样性的扩展。

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