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嗜盐芽生酵母的细胞周期:通过区带离心进行培养物分级分离以及DNA、RNA和蛋白质的积累

The cell cycle of the budding yeast Sterigmatomyces halophilus: culture fractionation by zonal centrifugation and the accumulation of DNA, RNA and protein.

作者信息

Salmon I, Poole R K

出版信息

J Gen Microbiol. 1983 Jul;129(7):2129-41. doi: 10.1099/00221287-129-7-2129.

DOI:10.1099/00221287-129-7-2129
PMID:6685170
Abstract

Sterigmatomyces halophilus is an unusual budding yeast in which daughter cells are formed, remote from the mother cell, on fine projections called sterigmata. Some fundamental properties of the cell cycle have been explored by separating cells from an exponentially growing culture into size, and thus age, classes by density-gradient centrifugation. Rate separations on high capacity, high resolution, equivolumetric gradients of sucrose, or, alternatively, isopycnic separations on gradients of Urografin revealed consistent and reproducible patterns of accumulation of DNA, RNA and protein through the cell cycle. Total DNA accumulation was stepwise, synthesis occurring late in the cycle, whilst protein accumulated continuously with no evidence for the discontinuities reported in some other lower eukaryotes. Total RNA accumulation, measured either colorimetrically or by long-term incorporation of radioactively-labelled uracil was transiently elevated early in the cycle and then accumulated continuously. A mathematical analysis of the volume distributions of the cells in fractions from the gradients showed that there is a hyperbolic relationship between cell age and size but that, to a first approximation, measurements of cell size (and density) are direct measures of age. The results are discussed with reference to (1) the unusually high buoyant density of this yeast, (2) the resolution of zonal cell separation methods and (3) macromolecular accumulation in the cell cycles of other eukaryotic micro-organisms.

摘要

嗜盐柄孢酵母是一种不同寻常的出芽酵母,其 daughter 细胞在称为柄的细小突起上远离母细胞形成。通过密度梯度离心将指数生长培养物中的细胞按大小(进而按年龄)分类,从而探索了细胞周期的一些基本特性。在高容量、高分辨率、等体积的蔗糖梯度上进行速率分离,或者在泛影葡胺梯度上进行等密度分离,揭示了整个细胞周期中 DNA、RNA 和蛋白质积累的一致且可重复的模式。总 DNA 积累是逐步的,合成发生在周期后期,而蛋白质持续积累,没有证据表明在其他一些低等真核生物中报道的间断情况。通过比色法或通过长期掺入放射性标记的尿嘧啶来测量的总 RNA 积累在周期早期短暂升高,然后持续积累。对梯度分级中细胞体积分布的数学分析表明,细胞年龄与大小之间存在双曲线关系,但初步近似地,细胞大小(和密度)的测量是年龄的直接度量。结合以下几点讨论了这些结果:(1)这种酵母异常高的浮力密度,(2)区域细胞分离方法的分辨率,以及(3)其他真核微生物细胞周期中的大分子积累。

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