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Cell cycle control of Notch signaling and the functional regionalization of the neuroepithelium during vertebrate neurogenesis

机译:Notch信号传导的细胞周期控制和脊椎动物神经发生过程中神经上皮的功能区域化

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摘要

A critical feature of vertebrate neural precursors is the to-and-fro displacement of their nuclei as cell cycle progresses, thus giving rise to a pseudostratified epithelium. This nuclear behavior, referred to as interkinetic nuclear migration (INM), is translated into the disposition of the cell somas at different orthogonal levels depending on the cell cycle stage they are. The finding that important regulators of neurogenesis, such as the proneural and neurogenic genes, undergo cyclic changes of expression and function in coordination with the cell cycle and the INM, and that the neurogenic process correlates with a particular window of the cell cycle, in coincidence with the apical localization in the neuroepithelium of neural precursors, is a novel concept that facilitates our understanding of the neurogenic process in vertebrates. As such, recent data support the notion that the three-dimensional structure of the neuroepithelium is crucial for proper neuronal production. In this review, we describe current knowledge of the molecular mechanisms involved in the differential expression and function of the proneural and neurogenic gene products along the cell cycle, and we discuss important consequences for vertebrate neurogenesis derived from this observation.
机译:脊椎动物神经前体的关键特征是随着细胞周期的进行其核的来回移位,从而产生假复层上皮。这种核行为,称为运动核迁移(INM),根据它们处于细胞周期的不同阶段,转化为不同正交水平的细胞体配置。这一发现表明,重要的神经发生调节因子(如前神经和神经基因)经历与细胞周期和INM协调的表达和功能的周期性变化,同时神经发生过程与细胞周期的特定窗口相关在神经前体的神经上皮的顶端定位,是一个新颖的概念,有助于我们了解脊椎动物的神经发生过程。因此,最近的数据支持这样的观念,即神经上皮的三维结构对于适当的神经元产生至关重要。在这篇综述中,我们描述了有关沿细胞周期的前神经和神经基因产物的差异表达和功能的分子机制的最新知识,并且我们讨论了从这一观察中得出的脊椎动物神经发生的重要结果。

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