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在果蝇胚盘形成前胚胎中,微管结构的动态变化与细胞核迁移相关。

Dynamic changes in microtubule configuration correlate with nuclear migration in the preblastoderm Drosophila embryo.

作者信息

Baker J, Theurkauf W E, Schubiger G

机构信息

Department of Zoology, University of Washington, Seattle 98195.

出版信息

J Cell Biol. 1993 Jul;122(1):113-21. doi: 10.1083/jcb.122.1.113.

Abstract

Drosophila embryogenesis is initiated by a series of syncytial mitotic divisions. The first nine of these divisions are internal, and are accompanied by two temporally distinct nuclear movements that lead to the formation of a syncytial blastoderm with a uniform monolayer of cortical nuclei. The first of these movements, which we term axial expansion, occurs during division cycles 4-6 and distributes nuclei in a hollow ellipsoid underlying the cortex. This is followed by cortical migration, during cycles 7-10, which places the nuclei in a uniform monolayer at the cortex. Here we report that these two movements differ in their geometry, velocity, cell-cycle dependence, and protein synthesis requirement. We therefore conclude that axial expansion and cortical migration are mechanistically distinct, amplifying a similar conclusion based on pharmacological data (Zalokar and Erk, 1976). We have examined microtubule organization during cortical migration and find that a network of interdigitating microtubules connects the migrating nuclei. These anti-parallel microtubule arrays are observed between migrating nuclei and yolk nuclei located deeper in the embryo. These arrays are present during nuclear movement but break down when the nuclei are not moving. We propose that cortical migration is driven by microtubule-dependent forces that repel adjacent nuclei, leading to an expansion of the nuclear ellipsoid established by axial expansion.

摘要

果蝇胚胎发育由一系列合胞体有丝分裂开始。这些分裂中的前九次是内部分裂,并伴随着两种在时间上不同的核运动,这导致形成具有均匀单层皮质核的合胞体胚盘。我们将这些运动中的第一种称为轴向扩张,它发生在第4 - 6次分裂周期中,并将核分布在皮质下方的空心椭球中。随后是在第7 - 10次周期中的皮质迁移,它将核置于皮质的均匀单层中。在这里我们报告这两种运动在其几何形状、速度、细胞周期依赖性和蛋白质合成需求方面存在差异。因此我们得出结论,轴向扩张和皮质迁移在机制上是不同的,这进一步证实了基于药理学数据得出的类似结论(扎洛卡尔和埃尔克,1976年)。我们研究了皮质迁移过程中的微管组织,发现相互交错的微管网络连接着迁移的核。在迁移的核与位于胚胎更深层的卵黄核之间观察到这些反平行微管阵列。这些阵列在核运动期间存在,但当核不移动时会分解。我们提出皮质迁移是由微管依赖性力驱动的,这些力排斥相邻的核,导致由轴向扩张建立的核椭球体扩张。

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