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首页> 外文期刊>Histochemistry and Cell Biology >Wide confocal cytometry: a new approach to study proteomic and structural changes in the cell nucleus during the cell cycle
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Wide confocal cytometry: a new approach to study proteomic and structural changes in the cell nucleus during the cell cycle

机译:广泛的共聚焦细胞术:研究细胞周期中细胞核蛋白质组学和结构变化的新方法

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摘要

Wide-confocal-cytometry (WCC) is a new method developed in this paper that uses a standard confocal system to gather quantitative information on contents and fine structural details of cells. The system is operated under conditions of non-confocality, in order to capture the maximum amount of light emitted by the specimen (comparable to LSC). After analysis of macromolecule content (DNA, RNA, specific proteins, lipids, etc.), cells can be sampled using conventional confocal microscopy. We analyzed the illumination and acquiring capabilities of WCC. The quantitative power of WCC was validated by analysis of cell cycle stage in Hela cells, looking at DNA content and markers for S phase and mitosis. As an example of the potential of this methodology we have documented changes in cell nucleus during the cell cycle. After mitosis the cell nucleus changes its shape from elongated to ellipsoid and remains constant until G2. This change is associated with nuclear volume increase. As nuclear volume increases, chromatin becomes decondensed in an isometric manner, probably due to the increase in gene expression and factors necessary for RNA metabolism.
机译:广孔细胞计数法(WCC)是本文开发的一种新方法,它使用标准共聚焦系统收集有关细胞内容物和精细结构细节的定量信息。该系统在非共焦条件下运行,以捕获样品发出的最大量的光(与LSC相当)。在分析大分子含量(DNA,RNA,特定蛋白质,脂质等)后,可以使用常规共聚焦显微镜对细胞进行采样。我们分析了WCC的照明和获取能力。通过分析Hela细胞的细胞周期阶段,查看DNA含量以及S期和有丝分裂的标志物,验证了WCC的定量能力。作为这种方法潜力的一个例子,我们已经记录了细胞周期中细胞核的变化。有丝分裂后,细胞核的形状从细长形变为椭圆形,并保持恒定,直到G2。这种变化与核体积增加有关。随着核体积的增加,染色质会以等轴测图的方式缩聚,这可能是由于基因表达的增加和RNA代谢必需的因子所致。

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