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Apical movement during Interkinetic Nuclear Migration is a Two-Step Process

机译:互相核迁移期间的顶端运动是一项两步的过程

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摘要

Neural progenitor cells in the pseudostratified neuroepithelium in vertebrates undergo interkinetic nuclear migration, which results in mitotic cells localized to the apical surface. Interphase nuclei are distributed throughout the rest of the epithelium. How mitosis is coordinated with nuclear movement is unknown, and the mechanism by which the nucleus migrates apically is controversial. Using time-lapse confocal microscopy, we show that nuclei migrate apically in G2 phase via microtubules. However, late in G2, centrosomes leave the apical surface after cilia are disassembled, and mitosis initiates away from the apical surface. The mitotic cell then rounds up to the apical surface, which is an actin-dependent process. This behavior is observed in both chicken neural-tube-slice preparations and in mouse cortical slices, and therefore is likely to be a general feature of interkinetic nuclear migration. We propose a new model for interkinetic nuclear migration in which actin and microtubules are used to position the mitotic cell at the apical surface.
机译:脊椎动物的伪分层神经上皮细胞中的神经祖细胞经历动核迁移,这导致有丝分裂细胞定位于根尖表面。相间核分布在其余的上皮细胞中。如何有丝分裂与核运动协调是未知的,和核顶峰迁移的机制是有争议的。使用延时共聚焦显微镜,我们显示核通过微管在G2期顶端迁移。但是,在G2后期,纤毛被分解后,中心体会离开顶表面,并且有丝分裂会从顶表面开始。然后,有丝分裂细胞向上舍入到顶端表面,这是肌动蛋白依赖性过程。在鸡神经管切片制剂和小鼠皮质切片中均观察到此行为,因此可能是运动核迁移的一般特征。我们提出了一种新的动力学核迁移模型,其中肌动蛋白和微管用于将有丝分裂细胞定位在根尖表面。

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