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与SmpB复合的转运信使核糖核酸的转运核糖核酸结构域的晶体结构

Crystal structure of the transfer-RNA domain of transfer-messenger RNA in complex with SmpB.

作者信息

Gutmann Sascha, Haebel Peter W, Metzinger Laurent, Sutter Markus, Felden Brice, Ban Nenad

机构信息

Institut für Molekularbiologie und Biophysik, Eidgenössische Technische Hochschule Hönggerberg (ETH Zürich), HPK Gebäude, CH-8093 Zürich, Switzerland.

出版信息

Nature. 2003 Aug 7;424(6949):699-703. doi: 10.1038/nature01831.

Abstract

Accurate translation of genetic information into protein sequence depends on complete messenger RNA molecules. Truncated mRNAs cause synthesis of defective proteins, and arrest ribosomes at the end of their incomplete message. In bacteria, a hybrid RNA molecule that combines the functions of both transfer and messenger RNAs (called tmRNA) rescues stalled ribosomes, and targets aberrant, partially synthesized, proteins for proteolytic degradation. Here we report the 3.2-A-resolution structure of the tRNA-like domain of tmRNA (tmRNA(Delta)) in complex with small protein B (SmpB), a protein essential for biological functions of tmRNA. We find that the flexible RNA molecule adopts an open L-shaped conformation and SmpB binds to its elbow region, stabilizing the single-stranded D-loop in an extended conformation. The most striking feature of the structure of tmRNA(Delta) is a 90 degrees rotation of the TPsiC-arm around the helical axis. Owing to this unusual conformation, the SmpB-tmRNA(Delta) complex positioned into the A-site of the ribosome orients SmpB towards the small ribosomal subunit, and directs tmRNA towards the elongation-factor binding region of the ribosome. On the basis of this structure, we propose a model for the binding of tmRNA on the ribosome.

摘要

将遗传信息准确地翻译成蛋白质序列依赖于完整的信使核糖核酸(mRNA)分子。截短的mRNA会导致合成有缺陷的蛋白质,并使核糖体在其不完整信息的末端停滞。在细菌中,一种兼具转运RNA(tRNA)和信使RNA功能的杂合RNA分子(称为转移信使核糖核酸,即tmRNA)能拯救停滞的核糖体,并将异常的、部分合成的蛋白质靶向进行蛋白水解降解。在此,我们报告了tmRNA的tRNA样结构域(tmRNA(Delta))与小蛋白B(SmpB,tmRNA生物学功能所必需的一种蛋白质)形成复合物的3.2埃分辨率结构。我们发现,这种柔性RNA分子呈开放的L形构象,且SmpB结合到其肘部区域,将单链D环稳定在伸展构象。tmRNA(Delta)结构最显著的特征是假尿嘧啶-胞嘧啶-胸腺嘧啶(TPsiC)臂围绕螺旋轴旋转了90度。由于这种不同寻常的构象,定位在核糖体A位点的SmpB-tmRNA(Delta)复合物使SmpB朝向小核糖体亚基,并将tmRNA导向核糖体的延伸因子结合区域。基于这一结构,我们提出了一个tmRNA在核糖体上结合的模型。

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