Schedl T, Burland T G, Gull K, Dove W F
J Cell Biol. 1984 Jul;99(1 Pt 1):155-65. doi: 10.1083/jcb.99.1.155.
The temporal relationship between tubulin expression and the assembly of the mitotic spindle microtubules has been investigated during the naturally synchronous cell cycle of the Physarum plasmodium. The cell cycle behavior of the tubulin isoforms was examined by two-dimensional gel electrophoresis of proteins labeled in vivo and by translation of RNA in vitro. alpha 1-, alpha 2-, beta 1-, and beta 2-tubulin synthesis increases coordinately until metaphase, and then falls, with beta 2 falling more rapidly than beta 1. Nucleic acid hybridization demonstrated that alpha- and beta-tubulin RNAs accumulate coordinately during G2, peaking at metaphase. Quantitative analysis demonstrated that alpha-tubulin RNA increases with apparent exponential kinetics, peaking with an increase over the basal level of greater than 40-fold. After metaphase, tubulin RNA levels fall exponentially, with a short half-life (19 min). Electron microscopic analysis of the plasmodium showed that the accumulation of tubulin RNA begins long before the polymerization of mitotic spindle microtubules. By contrast, the decay of tubulin RNA after metaphase coincides with the depolymerization of the spindle microtubules.
在多头绒泡菌原质团自然同步的细胞周期中,研究了微管蛋白表达与有丝分裂纺锤体微管组装之间的时间关系。通过对体内标记蛋白质的二维凝胶电泳和体外RNA翻译来检测微管蛋白亚型的细胞周期行为。α1-、α2-、β1-和β2-微管蛋白的合成在中期之前协同增加,然后下降,β2的下降速度比β1更快。核酸杂交表明,α-和β-微管蛋白RNA在G2期协同积累,在中期达到峰值。定量分析表明,α-微管蛋白RNA以明显的指数动力学增加,比基础水平增加超过40倍时达到峰值。中期后,微管蛋白RNA水平呈指数下降,半衰期较短(19分钟)。对原质团的电子显微镜分析表明,微管蛋白RNA的积累早在有丝分裂纺锤体微管聚合之前就开始了。相比之下,中期后微管蛋白RNA的降解与纺锤体微管的解聚同时发生。