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起始复合物形成过程中磷酸化40-S核糖体亚基的优先利用。

Preferential utilization of phosphorylated 40-S ribosomal subunits during initiation complex formation.

作者信息

Duncan R, McConkey E H

出版信息

Eur J Biochem. 1982 Apr;123(3):535-8. doi: 10.1111/j.1432-1033.1982.tb06564.x.

Abstract

HeLa cells grown to a high density in spinner culture contain little or no phosphorus associated with ribosomal protein S6. When cells are transferred to fresh medium containing 10% calf serum, S6 becomes rapidly and multiply phosphorylated. Ribosomal proteins were extracted from subpolysome and polysome fractions, displayed on two-dimensional gels, and the distribution of phosphorylated S6 was quantified. Polysomal ribosomes have a higher percentage of phosphorylated S6 than subpolysomes at all times after transfer and the difference becomes more pronounced as the extent of phosphorylation increases. This difference cannot be explained by preferential phosphorylation of polysomal ribosomes, since kinase activity is equally distributed between polysomes and subpolysomes. Likewise, preferential dephosphorylation of subpolysomal ribosomes during cell fractionation does not occur. We interpret our results to mean that phosphorylated 40-S subunits form initiation complexes more efficiently than non-phosphorylated 40-S subunits.

摘要

在转瓶培养中生长至高密度的HeLa细胞所含的与核糖体蛋白S6相关的磷很少或几乎没有。当细胞转移到含有10%小牛血清的新鲜培养基中时,S6会迅速且多次磷酸化。从亚多核糖体和多核糖体组分中提取核糖体蛋白,在二维凝胶上展示,并对磷酸化S6的分布进行定量。在转移后的所有时间里,多核糖体中的磷酸化S6百分比都比亚多核糖体高,并且随着磷酸化程度的增加,这种差异变得更加明显。这种差异不能用多核糖体的优先磷酸化来解释,因为激酶活性在多核糖体和亚多核糖体之间是均匀分布的。同样,在细胞分级分离过程中也不会发生亚多核糖体的优先去磷酸化。我们将我们的结果解释为意味着磷酸化的40-S亚基比未磷酸化的40-S亚基更有效地形成起始复合物。

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