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活跃中期有丝分裂纺锤体平衡的热力学分析。

A thermodynamic analysis of mitotic spindle equilibrium at active metaphase.

作者信息

Stephens R E

出版信息

J Cell Biol. 1973 Apr;57(1):133-47. doi: 10.1083/jcb.57.1.133.

Abstract

The mitotic apparatus of first-division metaphase eggs of the sea urchin Strongylocentrotus drobachiensis was observed by means of polarization microscopy under controlled temperature conditions. Eggs were fertilized and grown at two temperature extremes in order to produce two different sizes of available spindle pool. Slow division time allowed successive samples of such cells to be observed at the same point in metaphase but at different equilibrium temperatures, yielding curves of metaphase equilibrium birefringence vs. observational temperature. Using the plateau value of birefringence at higher temperatures as a measure of total available spindle pool and the observed birefringence at lower temperatures as a measure of polymerized material at equilibrium, the spindle protein association was evaluated according to the method of Inoué. Both pool conditions produced linear van't Hoff functions. Analysis of these functions yielded enthalpy and entropy changes of +55-65 kcal/mol and +197-233 entropy units (eu), respectively. These values for active mitotic metaphase are quite comparable to those obtained by Inoué and co-workers for arrested meiotic metaphase cells. When other equilibrium treatments were considered, the best fit to the experimental data was still that of Inoué, a treatment which theoretically involves first-order polymerization and dissociation kinetics. Treatment of metaphase cells with D(2)O by direct immersion drove the equilibrium to completion regardless of temperature, attaining or exceeding a birefringence value equal to the cell's characteristic pool size; perfusion with D(2)O appeared to erase the original temperature-determined pool size differences for the two growth conditions, attaining a maximum value characteristic of the larger pool condition. These data confirm Inoué's earlier contention that D(2)O treatment can modify the available spindle pool.

摘要

在可控温度条件下,利用偏光显微镜观察了海胆强壮瘤海胆(Strongylocentrotus drobachiensis)第一次分裂中期卵的有丝分裂装置。为了产生两种不同大小的可用纺锤体池,将卵在两个极端温度下受精并培养。较慢的分裂时间使得可以在中期的同一点但在不同的平衡温度下观察这些细胞的连续样本,从而得到中期平衡双折射与观察温度的曲线。以较高温度下双折射的平稳值作为总可用纺锤体池的量度,以较低温度下观察到的双折射作为平衡时聚合物质的量度,根据Inoué的方法评估纺锤体蛋白的缔合。两种池条件都产生了线性范特霍夫函数。对这些函数的分析分别得出焓变和熵变为+55 - 65千卡/摩尔和+197 - 233熵单位(eu)。这些有丝分裂活跃中期的值与Inoué及其同事对减数分裂中期停滞细胞获得的值相当。当考虑其他平衡处理时,对实验数据的最佳拟合仍然是Inoué的处理方法,该方法理论上涉及一级聚合和解离动力学。通过直接浸入用重水(D₂O)处理中期细胞,无论温度如何,都能使平衡达到完全状态,达到或超过等于细胞特征池大小的双折射值;用重水灌注似乎消除了两种生长条件下最初由温度决定的池大小差异,达到了较大池条件的最大值特征。这些数据证实了Inoué早期的观点,即重水处理可以改变可用纺锤体池。

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