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首页> 外文期刊>Journal of cell biology >Quantitative studies on the polarization optical properties of living cells II. The role of microtubules in birefringence of the spindle of the sea urchin egg.
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Quantitative studies on the polarization optical properties of living cells II. The role of microtubules in birefringence of the spindle of the sea urchin egg.

机译:活细胞偏振光学特性的定量研究II。微管在海胆卵纺锤的双折射中的作用。

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Birefringence of the mitotic apparatus (MA) and its change during mitosis in sea urchin eggs were quantitatively determined using the birefringence detection apparatus reported in the preceding paper (Hiramoto el al., 1981, J. Cell Biol. 89:115-120). The birefringence and the form of the MA are represented by five parameters: peak retardation (delta p), through retardation (delta t), interpolar distance (D1), the distance (D2) between chromosome groups moving toward poles, and the distance (D3) between two retardation peaks. Distributions of birefringence retardation and the coefficient of birefringence in the spindle were quantitatively determined in MAs isolated during metaphase and anaphase. The distribution of microtubules (MTs) contained in the spindle is attributable to the form birefringence caused by regularly arranged MTs. The distribution coincided fairly well with the distribution of MTs in isolated MAs determined by electron microscopy. Under the same assumption, the distribution of MTS in the spindle in living cells during mitosis was determined. The results show that the distribution of MTs and the total amount of polymerized tubulin (MTs) in the spindle change during mitosis, suggesting the assembly and disassembly of MTs as well as the dislocation of MTs during mitosis.
机译:使用先前论文(Hiramoto et al。,1981,J.Cell Biol.89:115-120)中报道的双折射检测装置,定量测定了海胆卵中有丝分裂装置(MA)的双折射及其在有丝分裂期间的变化。 MA的双折射和形式由五个参数表示:峰延迟(delta p),通过延迟(delta t),极间距离(D1),染色体向极点移动的距离(D2)和距离( D3)在两个延迟峰之间。在中期和后期分离的MA中定量测定了双折射延迟的分布和纺锤中双折射系数。纺锤中包含的微管(MTs)的分布归因于规则排列的MT引起的形式双折射。该分布与通过电子显微镜确定的分离的MA中MT的分布相当吻合。在相同的假设下,确定有丝分裂期间活细胞中纺锤体中MTS的分布。结果表明有丝分裂期间纺锤体中MTs的分布和聚合微管蛋白(MTs)的总量发生了变化,表明MTs的组装和拆卸以及有丝分裂过程中MTs的错位。

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