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紫杉醇对有丝分裂的作用:对海葱胚乳中微管排列和有丝分裂纺锤体功能的影响

Action of taxol on mitosis: modification of microtubule arrangements and function of the mitotic spindle in Haemanthus endosperm.

作者信息

Molè-Bajer J, Bajer A S

出版信息

J Cell Biol. 1983 Feb;96(2):527-40. doi: 10.1083/jcb.96.2.527.

Abstract

We have studied the effect of taxol on mitosis in Haemanthus endosperm. Immuno-Gold Stain (IGS), a new immunocytochemical method (17), was used to visualize microtubules (MTs) in the light microscope. Observations on MT arrangements were correlated with studies in vivo. Chromosome movements are affected in all stages of mitosis which progresses over at least 10(4) range of taxol concentrations. The three most characteristic effects on MTs are: (a) enhancement of the lateral associations between MTs, seen especially during the reorganization of the polar region of the spindle, (b) promotion of MT assembly, leading to the formation of additional MTs in the spindle and MT arrays in the cytoplasm, and (c) an increase in MT stability, demonstrated in their increased cold resistance. In this report, the emphasis is on the primary, immediate effects, occurring in the first 30 min of taxol action. Effects are detected after a few mins, are reversible, and are concentration/time dependent. The spindle and phragmoplast are remarkably modified due to the enhancement of lateral associations of MTs and the formation of abundant nonkinetochore and polar, asterlike MTs. The equatorial region of the interzone in anaphase may be entirely depleted of MTs, and the spindle may break perpendicular to the spindle axis. Mitosis is completed in these conditions, providing evidence for the motile autonomy of each half-spindle. Trailing chromosome arms in anaphase are often stretched and broken. Chromosome fragments are transported away from the polar regions, i.e., in the direction opposite to that expected (5, 6). This supplies the first direct evidence of pushing by elongating MTs in an anastral higher plant spindle. These observations draw attention to the relation between the lateral association of MT ends to assembly/disassembly and to the role of such an interaction in spindle function and organization.

摘要

我们研究了紫杉醇对海葱胚乳有丝分裂的影响。免疫金染色法(IGS)是一种新的免疫细胞化学方法(17),用于在光学显微镜下观察微管(MTs)。对MT排列的观察与体内研究相关。在至少10^4范围内的紫杉醇浓度下,有丝分裂的各个阶段的染色体运动都会受到影响。对MTs最具特征性的三种影响是:(a)MTs之间横向关联的增强,尤其在纺锤体极区重组期间可见;(b)MT组装的促进,导致纺锤体中形成额外的MTs以及细胞质中形成MT阵列;(c)MT稳定性的增加,表现为其抗冷性增强。在本报告中,重点是紫杉醇作用最初30分钟内发生的主要的、即时的影响。几分钟后即可检测到影响,这些影响是可逆的,且与浓度/时间相关。由于MTs横向关联的增强以及形成大量非动粒和极向、星状MTs,纺锤体和成膜体发生了显著改变。后期中间带的赤道区域可能完全没有MTs,纺锤体可能垂直于纺锤体轴断裂。在这些条件下有丝分裂完成,为每个半纺锤体的运动自主性提供了证据。后期滞后的染色体臂常常被拉伸和断裂。染色体片段从极区被运走,即朝着与预期相反的方向(5, 6)。这提供了在无星高等植物纺锤体中伸长的MTs进行推动的首个直接证据。这些观察结果引起了人们对MT末端的横向关联与组装/拆卸之间关系以及这种相互作用在纺锤体功能和组织中的作用的关注。

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