Eichenlaub-Ritter U, Chandley A C, Gosden R G
Chromosoma. 1986;94(5):337-45. doi: 10.1007/BF00328633.
Alterations in the organization of the microtubular cytoskeleton and chromosome alignment were examined by tubulin immunofluorescence and DAPI staining during in vivo ageing of naturally ovulated, metaphase-arrested oocytes of CBA/Ca mice in the fallopian tubes. In oocytes isolated from young mice on the day of oestrus, a few hours after ovulation, when they are still tightly surrounded by cumulus, the anti-tubulin fluorescence is almost exclusively restricted to the metaphase spindle. Only some faintly staining foci are observed in the cytoplasm, which presumably represent cytoplasmic MTOC not involved in spindle formation. The spindle is usually barrel-shaped or slightly pointed at its poles and does not possess astral fibres. In oocytes aged for more than 12 h in the fallopian tubes cytoplasmic asters develop, while microtubules seem to become gradually lost from the spindle, preferentially in its central area near the chromosomes. Astral fibres are observed radiating out from the polar centrosomes into the cytoplasm. In oocytes free of cumulus, and consequently more than 24 h post-ovulation, a pronounced shrinking of the spindle is observed. The mean pole-to-pole distance becomes significantly reduced in postovulatory aged cells. At the same time astral microtubules in the cytoplasm appear to become gradually depolymerized. Age-dependent alterations in the microtubular cytoskeleton do not seem to result from a changed pattern of the post-translational detyrosylation of alpha-tubulin in certain sets of microtubules. In freshly ovulated oocytes chromosomes in most spindles are well ordered and precisely arranged at the equatorial plane.(ABSTRACT TRUNCATED AT 250 WORDS)
通过微管蛋白免疫荧光和DAPI染色,在输卵管中对自然排卵、处于中期阻滞的CBA/Ca小鼠卵母细胞进行体内老化实验,研究微管细胞骨架组织和染色体排列的变化。在发情日从年轻小鼠分离的卵母细胞中,排卵后数小时,当它们仍被卵丘紧密包围时,抗微管蛋白荧光几乎完全局限于中期纺锤体。仅在细胞质中观察到一些微弱染色的焦点,推测代表未参与纺锤体形成的细胞质微管组织中心。纺锤体通常呈桶形或两极稍尖,不具有星体纤维。在输卵管中老化超过12小时的卵母细胞中,细胞质星体发育,而微管似乎逐渐从纺锤体中丢失,优先在靠近染色体的中央区域。观察到星体纤维从极性中心体辐射到细胞质中。在没有卵丘的卵母细胞中,即排卵后超过24小时,观察到纺锤体明显收缩。排卵后老化细胞的平均极间距离显著减小。同时,细胞质中的星体微管似乎逐渐解聚。微管细胞骨架的年龄依赖性变化似乎不是由某些微管组中α-微管蛋白翻译后去酪氨酸化模式的改变引起的。在刚排卵的卵母细胞中,大多数纺锤体中的染色体排列良好,精确地排列在赤道平面上。(摘要截短至250字)