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酵母核糖体蛋白S28和S4中的突变会影响翻译的准确性,并改变核糖体对巴龙霉素的敏感性。

Mutations in yeast ribosomal proteins S28 and S4 affect the accuracy of translation and alter the sensitivity of the ribosomes to paromomycin.

作者信息

Synetos D, Frantziou C P, Alksne L E

机构信息

Laboratory of Biochemistry, School of Medicine, University of Patras, Greece.

出版信息

Biochim Biophys Acta. 1996 Nov 11;1309(1-2):156-66. doi: 10.1016/s0167-4781(96)00128-5.

Abstract

Ribosomal proteins S12, S5 and S4 of Escherichia coli are essential for the control of translational accuracy. Their yeast equivalents, i.e., S28, S4 and S13, have also been implicated in this process. Using a poly(U)-dependent cell-free translation system, we determined the accuracy of translation and the sensitivity to antibiotic paromomycin of yeast ribosomes carrying mutant ribosomal proteins S28 and/or S4. Our results confirm by quantitative biochemical methods previous genetic data showing that proteins S28 and S4 are involved in the decoding activity of the ribosome and interact to control translational accuracy. We find that the suppressor mutation SUP44 in yeast S4, decreased the accuracy of translation. To examine the effect of mutant S28, we disrupted RPS28B and introduced in RPS28A the same substitutions that cause hyperaccurate translation or antibiotic resistance in bacteria. Three of these substitutions (Lys-62-->Asn, Thr or Gln) similarly increased translational accuracy in vitro or antibiotic resistance. In the presence of the SUP44 mutation, these substitutions partially reversed the decrease of translational accuracy caused by SUP44. However, the Lys-62-->Arg substitution decreased translational accuracy and caused antibiotic sensitivity both in nonsuppressor and in SUP44 haploids. These results establish the role of Lys-62 of S28 in optimizing translational accuracy and provide a more precise view of the functional role of two important ribosomal proteins.

摘要

大肠杆菌的核糖体蛋白S12、S5和S4对于控制翻译准确性至关重要。它们在酵母中的对应蛋白,即S28、S4和S13,也参与了这一过程。我们使用依赖于聚尿苷酸的无细胞翻译系统,测定了携带突变核糖体蛋白S28和/或S4的酵母核糖体的翻译准确性和对抗生素巴龙霉素的敏感性。我们的结果通过定量生化方法证实了先前的遗传数据,即蛋白S28和S4参与核糖体的解码活性并相互作用以控制翻译准确性。我们发现酵母S4中的抑制突变SUP44降低了翻译准确性。为了研究突变S28的影响,我们破坏了RPS28B,并在RPS28A中引入了在细菌中导致超精确翻译或抗生素抗性的相同替代。其中三个替代(Lys-62→Asn、Thr或Gln)在体外类似地提高了翻译准确性或抗生素抗性。在存在SUP44突变的情况下,这些替代部分逆转了由SUP44引起的翻译准确性下降。然而,Lys-62→Arg替代降低了翻译准确性,并在非抑制和SUP44单倍体中均导致抗生素敏感性。这些结果确定了S28的Lys-62在优化翻译准确性中的作用,并提供了对两种重要核糖体蛋白功能作用更精确的观点。

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