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在大肠杆菌翻译过程中,有多少个延伸因子Tu(EF-Tu)分子参与氨酰-tRNA的结合和肽键形成?

How many EF-Tu molecules participate in aminoacyl-tRNA binding and peptide bond formation in Escherichia coli translation?

作者信息

Ehrenberg M, Rojas A M, Weiser J, Kurland C G

机构信息

Department of Molecular Biology, BMC, Uppsala University, Sweden.

出版信息

J Mol Biol. 1990 Feb 20;211(4):739-49. doi: 10.1016/0022-2836(90)90074-V.

Abstract

We have observed that two EF-Tu.GTP cycles are required to make one peptide bond during steady-state translation in an accurate and fast poly(U) translation system prepared from Escherichia coli. We have also found that there are two complexes of EF-Tu.GTP bound to one molecule of aminoacyl-tRNA under our experimental conditions. We suggest, on the basis of these data, that aminoacyl-tRNA enters the ribosomal A-site in a pentameric complex together with two EF-Tu and two GTP molecules. When the tRNA is delivered to the ribosome two GTP molecules are hydrolyzed. It is possible that the functional role of such an EF-Tu dimer is related to the function of the two L7/L12 dimers in the large ribosomal subunit.

摘要

我们观察到,在由大肠杆菌制备的精确且快速的聚(U)翻译系统中进行稳态翻译时,形成一个肽键需要两个EF-Tu·GTP循环。我们还发现在我们的实验条件下,有两个EF-Tu·GTP复合物与一分子氨酰-tRNA结合。基于这些数据,我们推测氨酰-tRNA与两个EF-Tu和两个GTP分子以五聚体复合物的形式进入核糖体A位点。当tRNA被递送至核糖体时,两个GTP分子被水解。这种EF-Tu二聚体的功能作用可能与大核糖体亚基中两个L7/L12二聚体的功能相关。

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