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细胞间接触在颤蚓胚胎中产生不对称有丝分裂器中的作用。

Role of intercellular contacts in generating an asymmetric mitotic apparatus in the Tubifex embryo.

作者信息

Takahashi H, Shimizu T

机构信息

Division of Biological Sciences, Graduate School of Science, Hokkaido University, Sapporo, Japan.

出版信息

Dev Growth Differ. 1997 Jun;39(3):351-62. doi: 10.1046/j.1440-169x.1997.t01-2-00011.x.

DOI:10.1046/j.1440-169x.1997.t01-2-00011.x
PMID:9227902
Abstract

The 2-cell stage embryo of Tubifex is composed of a smaller cell, AB, and a larger cell, CD. At the second cleavage, the CD-cell divides unequally. The mitotic apparatus (MA) involved in this division is organized asymmetrically: the MA pole to be segregated to a smaller cell is flattened and truncated, and associated with the anterior cortex facing the AB-cell, while the other pole is symmetric and located more centrally. The present study was undertaken to elucidate the mechanism that generates asymmetry in the MA organization in CD-cells. When CD-cell nuclei, which are normally located near the anterior cortex, were displaced toward the posterior end of the cell (i.e. opposite AB-cells) by centrifugation, MA assembled ectopically there, and were bilaterally symmetric in organization. Similar symmetric MA were formed in isolated CD-cells, which divided more equally than intact cells. This equality of cell division was dramatically reduced if the anterior surface of isolated CD-cells formed contact with other cells, such as AB-, C- and 4D-cells. The MA that formed in these reconstituted embryos were asymmetric in organization; one MA pole was always found to be truncated and apposed to the cortical site at the cell contact. Symmetric MA were also observed in cytochalasin-treated embryos. Together with the finding that one of the MA poles is physically attached to the anterior cortex of the intact CD-cell, these results suggest that factors generating asymmetry in the spatial organization of MA poles reside at the anterior cortex of the CD-cell and that this cortical mechanism is dependent upon cell contacts.

摘要

颤蚓的二细胞期胚胎由一个较小的细胞AB和一个较大的细胞CD组成。在第二次卵裂时,CD细胞进行不均等分裂。参与此次分裂的有丝分裂器(MA)呈不对称组织:将被分离到较小细胞的MA极扁平且截断,并与面向AB细胞的前皮质相关联,而另一极则对称且位于更中央的位置。本研究旨在阐明在CD细胞中导致MA组织不对称的机制。当通常位于前皮质附近的CD细胞核通过离心被移向细胞后端(即与AB细胞相对的一端)时,MA在那里异位组装,并且在组织上是双侧对称的。在分离的CD细胞中也形成了类似的对称MA,其分裂比完整细胞更均等。如果分离的CD细胞的前表面与其他细胞(如AB、C和4D细胞)形成接触,这种细胞分裂的均等性会显著降低。在这些重构胚胎中形成的MA在组织上是不对称的;总是发现一个MA极被截断并与细胞接触处的皮质部位相邻。在细胞松弛素处理的胚胎中也观察到了对称MA。连同发现MA极之一在物理上附着于完整CD细胞的前皮质这一结果,这些结果表明在MA极空间组织中产生不对称的因素存在于CD细胞的前皮质,并且这种皮质机制依赖于细胞接触。

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