Snyder J A, Mullins J M
Department of Biological Sciences, University of Denver, CO 80208.
Cell Biol Int. 1993 Dec;17(12):1075-84. doi: 10.1006/cbir.1993.1040.
Taxol, a microtubule stabilizing agent, has been used to study changes in spindle microtubule organization during mitosis. PtK1 cells have been treated with 5 micrograms/ml taxol for brief periods to determine its effect on spindle architecture. During prophase taxol induces microtubules to aggregate, particularly evident in the region between the nucleus and cell periphery. Taxol induces astral microtubule formation in prometaphase and metaphase cells concomitant with a reduction in spindle length. At anaphase taxol induces an increase in length in astral microtubules and reduces microtubule length in the interzone. Taxol-treated telophase cells show a reduction in the rate of furrowing and astral microtubules lack a discrete focus and are arranged more diffusely on the surface of the nuclear envelope. In summary, taxol treatment of cells prior to anaphase produces an increase in astral microtubules, a reduction in kinetochore microtubules and a decrease in spindle length. Brief taxol treatments during anaphase through early G1 promotes stabilization of microtubules, an increase in the length of astral microtubules and a delayed rate of cytokinesis.
紫杉醇是一种微管稳定剂,已被用于研究有丝分裂期间纺锤体微管组织的变化。用5微克/毫升的紫杉醇对PtK1细胞进行短期处理,以确定其对纺锤体结构的影响。在前期,紫杉醇诱导微管聚集,在细胞核与细胞周边之间的区域尤为明显。在有丝分裂前期和中期,紫杉醇诱导星状微管形成,同时纺锤体长度缩短。在后期,紫杉醇诱导星状微管长度增加,并缩短中间区的微管长度。用紫杉醇处理的末期细胞显示出沟裂速率降低,星状微管缺乏离散的焦点,并且更分散地排列在核膜表面。总之,在后期之前用紫杉醇处理细胞会导致星状微管增加、动粒微管减少以及纺锤体长度缩短。在后期到早期G1期进行短期紫杉醇处理可促进微管稳定、星状微管长度增加以及胞质分裂速率延迟。