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普通硅藻有丝分裂中心纺锤体的三维结构。

Three-dimensional structure of the central mitotic spindle of Diatoma vulgare.

作者信息

McIntosh J R, McDonald K L, Edwards M K, Ross B M

出版信息

J Cell Biol. 1979 Nov;83(2 Pt 1):428-42. doi: 10.1083/jcb.83.2.428.

Abstract

Central mitotic spindles in Diatoma vulgare have been investigated using serial sections and electron microscopy. Spindles at both early stages (before metaphase) and later stages of mitosis (metaphase to telophase) have been analyzed. We have used computer graphics technology to facilitate the analysis and to produce stereo images of the central spindle reconstructed in three dimensions. We find that at prometaphase, when the nuclear envelope is dissassembling, the spindle is constructed from two sets of polar microtubules (MTs) that interdigitate to form a zone of overlap. As the chromosomes become organized into the metaphase configuration, the polar MTs, the spindle, and the zone of overlap all elongate, while the number of MTs in the central spindle decreases from greater than 700 to approximately 250. Most of the tubules lost are short ones that reside near the spindle poles. The previously described decrease in the length of the zone of overlap during anaphase central spindle elongation is clearly demonstrated in stereo images. In addition, we have used our three-dimensional data to determine the lengths of the spindle MTs at various times during mitotis. The distribution of lengths is bimodal during prometaphase, but the short tubules disappear and the long tubules elongate as mitosis proceeds. The distributions of MT lengths are compared to the length distributions of MTs polymerized in vitro, and a model is presented to account for our findings about both MT length changes and microtubule movements.

摘要

利用连续切片和电子显微镜对普通硅藻的中央有丝分裂纺锤体进行了研究。对有丝分裂早期(中期之前)和后期(中期到末期)的纺锤体都进行了分析。我们使用计算机图形技术来辅助分析,并生成三维重建的中央纺锤体的立体图像。我们发现,在前中期,当核膜解体时,纺锤体由两组极性微管(MTs)构成,它们相互交错形成一个重叠区。随着染色体排列成中期构型,极性微管、纺锤体和重叠区都伸长,而中央纺锤体中的微管数量从大于700根减少到约250根。丢失的大多数微管是位于纺锤体两极附近的短微管。在立体图像中清楚地显示了先前描述的后期中央纺锤体伸长过程中重叠区长度的减少。此外,我们利用三维数据确定了有丝分裂期间不同时间纺锤体微管的长度。在前中期,长度分布是双峰的,但随着有丝分裂的进行,短微管消失,长微管伸长。将微管长度分布与体外聚合的微管长度分布进行了比较,并提出了一个模型来解释我们关于微管长度变化和微管运动的发现。

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