Calzone F J, Angerer R C, Gorovsky M A
Nucleic Acids Res. 1982 Mar 25;10(6):2145-61. doi: 10.1093/nar/10.6.2145.
The fraction of ribosomes loaded on polysomes is about 95% in logarithmically growing Tetrahymena thermophila, and about 4% in starved cells. Cytoplasmic extracts from cells in these two physiological states were used to develop column chromatographic methods for the purification of polysomes. Bio-Gel A 1.5 m was found to separate total cytoplasmic ribosomes from many soluble proteins, including RNAse, with no detectable change in the polysome size distribution. Polysomes can be separated from monosomes and non-polysomal mRNA by chromatography on Bio-Gel A 15 m without size selection. These methods can easily be adapted to large scale preparations of polysomes, even from cells where a small fraction of the ribosomes is on polysomes. A method is described for reversible precipitation of polysomes and monosomes from dilute solutions at pH 5.3 which greatly facilitates polysome isolation. Hybridization of 3H-labeled polyU to RNA isolated from column fractions has been used to demonstrate that purification of EDTA released polysomal mRNA can be performed using the column chromatography procedures described here. These methods have been employed to demonstrate that most of the cytoplasmic mRNA in log-phase Tetrahymena is loaded onto polysomes while most of the mRNA is starved cells exists in a non-polysomal form.
在对数生长期的嗜热四膜虫中,结合在多聚核糖体上的核糖体比例约为95%,而在饥饿细胞中约为4%。利用处于这两种生理状态的细胞的细胞质提取物,开发了用于纯化多聚核糖体的柱色谱方法。发现Bio-Gel A 1.5m可以将总细胞质核糖体与许多可溶性蛋白质(包括RNA酶)分离,多聚核糖体大小分布没有可检测到的变化。通过在Bio-Gel A 15m上进行色谱分离,可以在不进行大小选择的情况下将多聚核糖体与单体和非多聚体mRNA分离。这些方法可以很容易地适用于大规模制备多聚核糖体,即使是来自核糖体只有一小部分结合在多聚核糖体上的细胞。本文描述了一种在pH 5.3条件下从稀溶液中可逆沉淀多聚核糖体和单体的方法,这极大地促进了多聚核糖体的分离。用3H标记的聚U与从柱级分中分离的RNA杂交,已证明可以使用本文所述的柱色谱程序对EDTA释放的多聚体mRNA进行纯化。这些方法已被用于证明对数期嗜热四膜虫中的大多数细胞质mRNA结合在多聚核糖体上,而饥饿细胞中的大多数mRNA以非多聚体形式存在。