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核糖体蛋白的磷酸化影响天蓝色链霉菌中核糖体亚基的结合及聚(U)的翻译。

Phosphorylation of ribosomal proteins influences subunit association and translation of poly (U) in Streptomyces coelicolor.

作者信息

Mikulík Karel, Bobek Jan, Ziková Alice, Smětáková Magdalena, Bezoušková Silvie

机构信息

Institute of Microbiology, Academy of Sciences of the Czech Republic, Prague 4, Videnská 1083, Czech Republic.

出版信息

Mol Biosyst. 2011 Mar;7(3):817-23. doi: 10.1039/c0mb00174k. Epub 2010 Dec 9.

Abstract

The occurrence of phosphorylated proteins in ribosomes of Streptomyces coelicolor was investigated. Little is known about which biological functions these posttranslational modifications might fulfil. A protein kinase associated with ribosomes phosphorylated six ribosomal proteins of the small subunit (S3, S4, S12, S13, S14 and S18) and seven ribosomal proteins of the large subunit (L2, L3, L7/L12, L16, L17, L23 and L27). The ribosomal proteins were phosphorylated mainly on the Ser/Thr residues. Phosphorylation of the ribosomal proteins influences ribosomal subunits association. Ribosomes with phosphorylated proteins were used to examine poly (U) translation activity. Phosphorylation induced about 50% decrease in polyphenylalanine synthesis. After preincubation of ribosomes with alkaline phosphatase the activity of ribosomes was greatly restored. Small differences were observed between phosphorylated and unphosphorylated ribosomes in the kinetic parameters of the binding of Phe-tRNA to the A-site of poly (U) programmed ribosomes, suggesting that the initial binding of Phe-tRNA is not significantly affected by phosphorylation. On contrary, the rate of peptidyl transferase was about two-fold lower than that in unphosphorylated ribosomes. The data presented demonstrate that phosphorylation of ribosomal proteins affects critical steps of protein synthesis.

摘要

对天蓝色链霉菌核糖体中磷酸化蛋白的出现情况进行了研究。关于这些翻译后修饰可能发挥哪些生物学功能,人们了解得很少。一种与核糖体相关的蛋白激酶使小亚基的六种核糖体蛋白(S3、S4、S12、S13、S14和S18)以及大亚基的七种核糖体蛋白(L2、L3、L7/L12、L16、L17、L23和L27)发生了磷酸化。核糖体蛋白主要在丝氨酸/苏氨酸残基上被磷酸化。核糖体蛋白的磷酸化影响核糖体亚基的结合。用含有磷酸化蛋白的核糖体来检测聚(U)翻译活性。磷酸化导致聚苯丙氨酸合成减少约50%。核糖体与碱性磷酸酶预孵育后,核糖体的活性得到了极大恢复。在聚(U)程序化核糖体的A位点上,磷酸化核糖体和未磷酸化核糖体在苯丙氨酰 - tRNA结合动力学参数方面存在微小差异,这表明苯丙氨酰 - tRNA的初始结合不受磷酸化的显著影响。相反,肽基转移酶的速率比未磷酸化核糖体中的速率低约两倍。所呈现的数据表明核糖体蛋白的磷酸化会影响蛋白质合成的关键步骤。

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