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大肠杆菌转移信使核糖核酸(tmRNA)中标签编码序列上游假结的功能与结构分析

Functional and structural analysis of a pseudoknot upstream of the tag-encoded sequence in E. coli tmRNA.

作者信息

Nameki N, Felden B, Atkins J F, Gesteland R F, Himeno H, Muto A

机构信息

Department of Biology, Faculty of Science, Hirosaki University, Hirosaki, 036-8561, Japan.

出版信息

J Mol Biol. 1999 Feb 26;286(3):733-44. doi: 10.1006/jmbi.1998.2487.

Abstract

Escherichia coli tmRNA (transfer-messenger RNA) facilitates a trans-translation reaction in which a stalled ribosome on a terminatorless mRNA switches to an internal coding sequence in tmRNA, resulting in the addition of an 11 amino acid residue tag to the truncated protein that is a signal for degradation and in recycling of the stalled ribosome. A tmRNA secondary structure model with a partial tRNA-like structure and several pseudoknots was recently proposed. This report describes an extensive mutational analysis of one predicted pseudoknot (PK1) located upstream of the E. coli tmRNA tag-encoded sequence. Both the extent of aminoacylation and the alanine incorporation into the tag sequence, reflecting the two functions of tmRNA, were measured in vitro for all the engineered RNA variants. To characterize structure-function relationships for the tmRNA mutants, their solution conformations were investigated by using structural probes and by measuring the temperature dependence of their UV absorbance. This analysis strongly supports the presence of a pseudoknot in E. coli tmRNA, and its involvement in trans-translation. Mutations disrupting the first stem of the pseudoknot inactivate function and promote stable alternative conformations. Mutations of the second stem of the pseudoknot also effect both functions. The nucleotide stretch between the two stems (loop 2) is required for efficient trans-translation, and nucleotides at positions 61 and 62 must be guanine residues. The probing data suggest the presence of magnesium ion(s) interacting with loop 2. The loops crossing the minor and major grooves can be mutated without significant effects on tmRNA function. Nucleotide insertion or deletion between the pseudoknot and the coding sequence do not change the mRNA frame of the tag-peptide sequence, suggesting that the pseudoknot structure is not a determinant for the resumption of translation.

摘要

大肠杆菌的转移信使核糖核酸(tmRNA)可促进反式翻译反应。在此反应中,终止密码子缺失的信使核糖核酸(mRNA)上停滞的核糖体转而读取tmRNA中的内部编码序列,从而在截短的蛋白质上添加一个11个氨基酸残基的标签,该标签是蛋白质降解的信号,同时可使停滞的核糖体循环利用。最近有人提出了一种tmRNA二级结构模型,该模型具有部分类似转运核糖核酸(tRNA)的结构和几个假结。本报告描述了对位于大肠杆菌tmRNA标签编码序列上游的一个预测假结(PK1)进行的广泛突变分析。针对所有工程化RNA变体,在体外测量了氨酰化程度以及丙氨酸掺入标签序列的情况,这两种情况分别反映了tmRNA的两种功能。为了表征tmRNA突变体的结构-功能关系,通过使用结构探针并测量其紫外吸收的温度依赖性,研究了它们的溶液构象。该分析有力地支持了大肠杆菌tmRNA中存在假结及其参与反式翻译的观点。破坏假结第一个茎的突变会使功能失活并促进稳定的替代构象。假结第二个茎的突变也会影响这两种功能。两个茎之间的核苷酸延伸区(环2)是高效反式翻译所必需的,并且第61和62位的核苷酸必须是鸟嘌呤残基。探测数据表明存在与环2相互作用的镁离子。穿过小沟和大沟的环发生突变对tmRNA功能没有显著影响。假结与编码序列之间的核苷酸插入或缺失不会改变标签肽序列的mRNA阅读框,这表明假结结构不是翻译恢复的决定因素。

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