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氨酰基转移核糖核酸-延伸因子Tu-核糖体相互作用导致三磷酸鸟苷水解。

Aminoacyl-tRNA-elongation factor Tu-ribosome interaction leading to hydrolysis of guanosine 5'-triphosphate.

作者信息

Takahashi K, Ghag S, Chládek S

出版信息

Biochemistry. 1986 Dec 16;25(25):8330-6. doi: 10.1021/bi00373a030.

Abstract

We investigated the elongation factor Tu (EF-Tu) dependent binding of Phe-tRNA and Phe-tRNAs with the nicks at positions 46, 37, and 17 to the Escherichia coli 70S ribosome-poly(U)-tRNAPhe complex. Binding of Phe-tRNA1-45 + 47-76, Phe-tRNA1-36 + 38-76, or Phe-tRNA1-16 + 17-76 to the 70S ribosome has been found to be poly(U) X tRNA dependent and, similar to that of intact Phe-tRNA, is inhibited by the antibiotic thiostrepton. We have further found that, contrary to a previous report [Modolell, J., Cabrer, B., Parmeggiani, A., & Vazquez, D. (1971) Proc. Natl. Acad. Sci. U.S.A. 68, 1796], the EF-Tu-ribosome GTPase mediated by Phe-tRNA is not inhibited by thiostrepton; rather, the drug stimulates the endogenous GTPase of the EF-Tu X 70S ribosome. Phe-tRNA fragments 47-76, 38-76, and 17-76 all promote the EF-Tu X GTPase reaction in the presence of 70S ribosome-poly(U)-tRNAPhe yeast. Moreover, since the GTPase-promoting activities of both the short and long fragments are similar, it appears that the most important aminoacyl transfer ribonucleic acid (aa-tRNA) interaction with EF-Tu occurs alongside its 3' quarter. Thiostrepton slightly stimulates the GTPase activity of these Phe-tRNA fragments. Although the Phe-tRNA1-36 + 38-76 cannot bind to poly(U) during its binding to 70S ribosomes, its binding at high Mg2+ concentration occurs at the A site. Thus, most of the bound modified Phe-tRNA functions as the acceptor in the peptidyltransferase reaction.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们研究了延伸因子Tu(EF-Tu)依赖性的苯丙氨酰tRNA(Phe-tRNA)以及在46、37和17位有切口的Phe-tRNAs与大肠杆菌70S核糖体-聚尿苷酸-tRNAPhe复合物的结合情况。已发现Phe-tRNA1-45 + 47-76、Phe-tRNA1-36 + 38-76或Phe-tRNA1-16 + 17-76与70S核糖体的结合依赖于聚尿苷酸X tRNA,并且与完整的Phe-tRNA类似,会受到抗生素硫链丝菌素的抑制。我们还进一步发现,与之前的一份报告[莫多雷尔,J.,卡布雷尔,B.,帕尔梅吉亚尼,A.,&巴斯克斯,D.(1971年)《美国国家科学院院刊》68,1796]相反,由Phe-tRNA介导的EF-Tu-核糖体GTP酶不受硫链丝菌素的抑制;相反,该药物会刺激EF-Tu X 70S核糖体的内源性GTP酶。在70S核糖体-聚尿苷酸-tRNAPhe酵母存在的情况下,Phe-tRNA片段47-76、38-76和17-76都能促进EF-Tu X GTP酶反应。此外,由于短片段和长片段的GTP酶促进活性相似,似乎最重要的氨酰基转移核糖核酸(aa-tRNA)与EF-Tu的相互作用发生在其3'端四分之一处。硫链丝菌素会轻微刺激这些Phe-tRNA片段的GTP酶活性。尽管Phe-tRNA1-36 + 38-76在与70S核糖体结合时不能与聚尿苷酸结合,但其在高镁离子浓度下的结合发生在A位点。因此,大多数结合的修饰Phe-tRNA在肽基转移酶反应中作为受体发挥作用。(摘要截短至250字)

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