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首页> 外文期刊>Molecular biology of the cell >Spindle formation in Aspergillus is coupled to tubulin movement into the nucleus
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Spindle formation in Aspergillus is coupled to tubulin movement into the nucleus

机译:曲霉中的纺锤体形成与微管蛋白运动进入细胞核有关

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摘要

In many important organisms, including many algae and most fungi, the nuclear envelope does not disassemble during mitosis. This fact raises the possibility that mitotic onset and/or exit might be regulated, in part, by movement of important mitotic proteins into and out of the nucleoplasm. We have used two methods to determine whether tubulin levels in the nucleoplasm are regulated in the fungus Aspergillus nidulans. First, we have used benomyl to disassemble microtubules and create a pool of free tubulin that can be readily observed by immunofluorescence. We find that tubulin is substantially excluded from interphase nuclei, but is present in mitotic nuclei. Second, we have observed a green fluorescent protein/alpha-tubulin fusion in living cells by time-lapse spinning-disk confocal microscopy. We find that tubulin is excluded from interphase nuclei, enters the nucleus seconds before the mitotic spindle begins to form, and is removed from the nucleoplasm during the M-to-G, transition. Our data indicate that regulation of intranuclear tubulin levels plays an important, perhaps essential, role in the control of mitotic spindle formation in A. nidulans. They suggest that regulation of protein movement into the nucleoplasm may be important for regulating mitotic onset in organisms with intranuclear mitosis. [References: 31]
机译:在许多重要生物中,包括许多藻类和大多数真菌,核被膜在有丝分裂期间不会分解。这一事实提出了可能通过部分重要的有丝分裂蛋白移入和移出核质来调节有丝分裂的发生和/或退出的可能性。我们已经使用两种方法来确定在构巢曲霉中是否调节了核质中的微管蛋白水平。首先,我们已经使用苯菌灵分解微管并创建了一个自由微管蛋白池,可以通过免疫荧光很容易观察到。我们发现微管蛋白基本上被排除在相间核之外,但存在于有丝分裂核中。第二,我们通过延时旋转盘共聚焦显微镜观察到了活细胞中绿色荧光蛋白/α-微管蛋白的融合。我们发现微管蛋白从相间核中排除,在有丝分裂纺锤体开始形成之前进入核,并在M到G过渡期间从核质中移出。我们的数据表明,核内微管蛋白水平的调节在构巢曲霉的有丝分裂纺锤体形成的控制中起着重要的,也许是必不可少的作用。他们认为,调节蛋白向核内的移动对于调节核内有丝分裂生物的有丝分裂发作可能很重要。 [参考:31]

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