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对翻译保真度的结构见解。

Structural insights into translational fidelity.

作者信息

Ogle James M, Ramakrishnan V

机构信息

Medical Research Council Laboratory of Molecular Biology, Cambridge CB2 2QH, United Kingdom.

出版信息

Annu Rev Biochem. 2005;74:129-77. doi: 10.1146/annurev.biochem.74.061903.155440.

Abstract

The underlying basis for the accuracy of protein synthesis has been the subject of over four decades of investigation. Recent biochemical and structural data make it possible to understand at least in outline the structural basis for tRNA selection, in which codon recognition by cognate tRNA results in the hydrolysis of GTP by EF-Tu over 75 A away. The ribosome recognizes the geometry of codon-anticodon base pairing at the first two positions but monitors the third, or wobble position, less stringently. Part of the additional binding energy of cognate tRNA is used to induce conformational changes in the ribosome that stabilize a transition state for GTP hydrolysis by EF-Tu and subsequently result in accelerated accommodation of tRNA into the peptidyl transferase center. The transition state for GTP hydrolysis is characterized, among other things, by a distorted tRNA. This picture explains a large body of data on the effect of antibiotics and mutations on translational fidelity. However, many fundamental questions remain, such as the mechanism of activation of GTP hydrolysis by EF-Tu, and the relationship between decoding and frameshifting.

摘要

蛋白质合成准确性的潜在基础一直是四十多年来研究的主题。最近的生化和结构数据使得至少大致了解tRNA选择的结构基础成为可能,在这种选择中,同源tRNA对密码子的识别导致EF-Tu在超过75埃远的距离水解GTP。核糖体识别前两个位置上密码子-反密码子碱基配对的几何结构,但对第三个或摆动位置的监测则不那么严格。同源tRNA额外的结合能部分用于诱导核糖体的构象变化,从而稳定EF-Tu水解GTP的过渡态,并随后加速tRNA进入肽基转移酶中心。GTP水解的过渡态,除其他外,其特征是tRNA发生扭曲。这幅图景解释了大量关于抗生素和突变对翻译保真度影响的数据。然而,许多基本问题仍然存在,例如EF-Tu激活GTP水解的机制,以及解码和移码之间的关系。

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