Winey M, Mamay C L, O'Toole E T, Mastronarde D N, Giddings T H, McDonald K L, McIntosh J R
Department of Molecular, Cellular and Developmental Biology, University of Colorado-Boulder 80309-0347, USA.
J Cell Biol. 1995 Jun;129(6):1601-15. doi: 10.1083/jcb.129.6.1601.
The three dimensional organization of microtubules in mitotic spindles of the yeast Saccharomyces cerevisiae has been determined by computer-aided reconstruction from electron micrographs of serially cross-sectioned spindles. Fifteen spindles ranging in length from 0.6-9.4 microns have been analyzed. Ordered microtubule packing is absent in spindles up to 0.8 micron, but the total number of microtubules is sufficient to allow one microtubule per kinetochore with a few additional microtubules that may form an interpolar spindle. An obvious bundle of about eight interpolar microtubules was found in spindles 1.3-1.6 microns long, and we suggest that the approximately 32 remaining microtubules act as kinetochore fibers. The relative lengths of the microtubules in these spindles suggest that they may be in an early stage of anaphase, even though these spindles are all situated in the mother cell, not in the isthmus between mother and bud. None of the reconstructed spindles exhibited the uniform populations of kinetochore microtubules characteristic of metaphase. Long spindles (2.7-9.4 microns), presumably in anaphase B, contained short remnants of a few presumed kinetochore microtubules clustered near the poles and a few long microtubules extending from each pole toward the spindle midplane, where they interdigitated with their counterparts from the other pole. Interpretation of these reconstructed spindles offers some insights into the mechanisms of mitosis in this yeast.
通过对酵母有丝分裂纺锤体连续横切片的电子显微镜图像进行计算机辅助重建,确定了酿酒酵母有丝分裂纺锤体中微管的三维结构。分析了15个长度在0.6 - 9.4微米之间的纺锤体。长度达0.8微米的纺锤体中不存在有序的微管排列,但微管总数足以保证每个动粒有一根微管,还有一些额外的微管可能形成极间纺锤体。在长度为1.3 - 1.6微米的纺锤体中发现了一束明显由约8根极间微管组成的微管束,我们认为其余约32根微管充当动粒纤维。这些纺锤体中微管的相对长度表明,它们可能处于后期的早期阶段,尽管这些纺锤体都位于母细胞中,而非母细胞与芽之间的峡部。重建的纺锤体中没有一个呈现出中期典型的均匀动粒微管群体。长纺锤体(2.7 - 9.4微米),推测处于后期B,包含一些假定的动粒微管的短残余物,聚集在两极附近,还有一些长微管从每个极向纺锤体中平面延伸,在那里它们与来自另一极的对应微管相互交错。对这些重建纺锤体的解读为这种酵母的有丝分裂机制提供了一些见解。