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30S翻译起始复合物的结构。

Structure of the 30S translation initiation complex.

作者信息

Simonetti Angelita, Marzi Stefano, Myasnikov Alexander G, Fabbretti Attilio, Yusupov Marat, Gualerzi Claudio O, Klaholz Bruno P

机构信息

Institute of Genetics and of Molecular and Cellular Biology, Department of Structural Biology and Genomics, Illkirch F-67404, France.

出版信息

Nature. 2008 Sep 18;455(7211):416-20. doi: 10.1038/nature07192. Epub 2008 Aug 31.

Abstract

Translation initiation, the rate-limiting step of the universal process of protein synthesis, proceeds through sequential, tightly regulated steps. In bacteria, the correct messenger RNA start site and the reading frame are selected when, with the help of initiation factors IF1, IF2 and IF3, the initiation codon is decoded in the peptidyl site of the 30S ribosomal subunit by the fMet-tRNA(fMet) anticodon. This yields a 30S initiation complex (30SIC) that is an intermediate in the formation of the 70S initiation complex (70SIC) that occurs on joining of the 50S ribosomal subunit to the 30SIC and release of the initiation factors. The localization of IF2 in the 30SIC has proved to be difficult so far using biochemical approaches, but could now be addressed using cryo-electron microscopy and advanced particle separation techniques on the basis of three-dimensional statistical analysis. Here we report the direct visualization of a 30SIC containing mRNA, fMet-tRNA(fMet) and initiation factors IF1 and GTP-bound IF2. We demonstrate that the fMet-tRNA(fMet) is held in a characteristic and precise position and conformation by two interactions that contribute to the formation of a stable complex: one involves the transfer RNA decoding stem which is buried in the 30S peptidyl site, and the other occurs between the carboxy-terminal domain of IF2 and the tRNA acceptor end. The structure provides insights into the mechanism of 70SIC assembly and rationalizes the rapid activation of GTP hydrolysis triggered on 30SIC-50S joining by showing that the GTP-binding domain of IF2 would directly face the GTPase-activated centre of the 50S subunit.

摘要

翻译起始是蛋白质合成普遍过程中的限速步骤,它通过一系列严格调控的步骤进行。在细菌中,当起始密码子在起始因子IF1、IF2和IF3的帮助下,由fMet-tRNA(fMet)反密码子在30S核糖体亚基的肽基位点解码时,正确的信使RNA起始位点和阅读框就被选定了。这产生了一个30S起始复合物(30SIC),它是70S起始复合物(70SIC)形成过程中的一个中间体,70SIC是在50S核糖体亚基与30SIC结合并释放起始因子时形成的。到目前为止,使用生化方法证明IF2在30SIC中的定位很困难,但现在可以基于三维统计分析,使用冷冻电子显微镜和先进的颗粒分离技术来解决这个问题。在这里,我们报告了一个包含mRNA、fMet-tRNA(fMet)以及起始因子IF1和结合GTP的IF2的30SIC的直接可视化结果。我们证明,fMet-tRNA(fMet)通过两种有助于形成稳定复合物的相互作用,保持在一个特征性的精确位置和构象:一种涉及埋在30S肽基位点的转运RNA解码茎,另一种发生在IF2的羧基末端结构域和tRNA受体末端之间。该结构为70SIC组装机制提供了见解,并通过表明IF2的GTP结合结构域将直接面对50S亚基的GTPase激活中心,解释了30SIC与50S结合时触发的GTP水解的快速激活。

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