首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >CHANGES IN THE ORGANIZATION OF TUBULIN DURING MEIOSIS IN THE EGGS OF THE SURF CLAM SPISULA SOLIDISSIMA
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CHANGES IN THE ORGANIZATION OF TUBULIN DURING MEIOSIS IN THE EGGS OF THE SURF CLAM SPISULA SOLIDISSIMA

机译:螺线虫螺旋藻表面卵母细胞减数分裂过程中微管蛋白的组织变化

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摘要

Polymerized tubulin can be stabilized in Kane's spindle isolation medium (HGL solution), isolated by differential centrifugation and then assayed by colchicine binding activity. In the eggs of the surf clam, Spisula solidissima, the level of particulate tubulin undergoes a series of specific changes during first meiotic division. In either unactivated ("interphase") eggs or metaphase eggs the amount of particulate tubulin was about 13% of the total at 23°C. The amount of particulate tubulin decreased shortly after activation, reaching a minimum value at about 5 min, the time of nuclear membrane breakdown. The particulate tubulin concentration then rose, reaching a maximum at metaphase, and then decreased again during anaphase, reaching a minimum at first polar body formation. In HGL homogenates of unactivated eggs a structure is present which has been shown to contain the interphase particulate tubulin (IPT). This structure consists essentially of a 10–20 µ granular sphere attached to a membranous material which is probably part of the egg cortex. These particles are absent at the time of nuclear membrane breakdown, when the level of particulate tubulin is minimal and when the first signs of spindle formation are visible. Electron microscopy of these particles by negative staining indicates that they are composed of microtubules associated with a granular matrix which may be a polymorphic aggregate of tubulin.
机译:可将聚合的微管蛋白稳定在凯恩的纺锤体分离培养基(HGL溶液)中,通过差速离心分离,然后通过秋水仙碱结合活性进行测定。在蛤c螺旋藻的卵中,在第一次减数分裂过程中,微粒微管蛋白的水平经历了一系列的特定变化。在未活化的(“中间相”)卵或中期卵中,微管蛋白颗粒的量在23℃下约为总量的13%。活化后不久,微管蛋白颗粒的量减少,在核膜破裂的约5分钟时达到最小值。然后微粒微管蛋白浓度上升,在中期达到最大值,然后在后期再次下降,在第一极体形成时达到最小值。在未活化卵的HGL匀浆中,存在一种结构,已显示其包含相间微粒微管蛋白(IPT)。这种结构基本上由一个10–20 µ的球形颗粒组成,该球形颗粒附着在可能是卵皮层一部分的膜状材料上。这些颗粒在核膜破裂时,颗粒微管蛋白的含量极低且纺锤体形成的最初迹象可见时不存在。通过负染色对这些颗粒进行电子显微镜观察表明,它们由与颗粒基质相关的微管组成,颗粒基质可能是微管蛋白的多态性聚集体。

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