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肽键形成会破坏核糖体上的Shine-Dalgarno相互作用。

Peptide bond formation destabilizes Shine-Dalgarno interaction on the ribosome.

作者信息

Uemura Sotaro, Dorywalska Magdalena, Lee Tae-Hee, Kim Harold D, Puglisi Joseph D, Chu Steven

机构信息

Department of Physics, Stanford University, Stanford, California 94305, USA.

出版信息

Nature. 2007 Mar 22;446(7134):454-7. doi: 10.1038/nature05625.

Abstract

The ribosome is a molecular machine that translates the genetic code contained in the messenger RNA into an amino acid sequence through repetitive cycles of transfer RNA selection, peptide bond formation and translocation. Here we demonstrate an optical tweezer assay to measure the rupture force between a single ribosome complex and mRNA. The rupture force was compared between ribosome complexes assembled on an mRNA with and without a strong Shine-Dalgarno (SD) sequence-a sequence found just upstream of the coding region of bacterial mRNAs, involved in translation initiation. The removal of the SD sequence significantly reduced the rupture force in complexes carrying an aminoacyl tRNA, Phe-tRNA(Phe), in the A site, indicating that the SD interactions contribute significantly to the stability of the ribosomal complex on the mRNA before peptide bond formation. In contrast, the presence of a peptidyl tRNA analogue, N-acetyl-Phe-tRNA(Phe), in the A site, which mimicked the post-peptidyl transfer state, weakened the rupture force as compared to the complex with Phe-tRNA(Phe), and the resultant force was the same for both the SD-containing and SD-deficient mRNAs. These results suggest that formation of the first peptide bond destabilizes the SD interaction, resulting in the weakening of the force with which the ribosome grips an mRNA. This might be an important requirement to facilitate movement of the ribosome along mRNA during the first translocation step.

摘要

核糖体是一种分子机器,它通过转运RNA选择、肽键形成和易位的重复循环,将信使RNA中包含的遗传密码翻译成氨基酸序列。在这里,我们展示了一种光镊测定法,用于测量单个核糖体复合物与信使RNA之间的断裂力。我们比较了在含有和不含有强Shine-Dalgarno(SD)序列的信使RNA上组装的核糖体复合物之间的断裂力,SD序列是在细菌信使RNA编码区上游发现的一段序列,参与翻译起始。去除SD序列显著降低了在A位点携带氨酰tRNA(苯丙氨酰-tRNA(Phe))的复合物中的断裂力,这表明SD相互作用对肽键形成前核糖体复合物在信使RNA上的稳定性有显著贡献。相比之下,A位点存在肽基tRNA类似物N-乙酰-苯丙氨酰-tRNA(Phe),它模拟了肽基转移后的状态,与含有苯丙氨酰-tRNA(Phe)的复合物相比,其断裂力减弱,并且对于含有SD和缺乏SD的信使RNA,合力是相同的。这些结果表明,第一个肽键的形成会使SD相互作用不稳定,导致核糖体与信使RNA结合力减弱。这可能是在第一个易位步骤中促进核糖体沿信使RNA移动的一个重要条件。

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