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卫星烟草坏死病毒翻译增强子结构域的5'和3'末端对翻译刺激的贡献不同。

The 5' and 3' extremities of the satellite tobacco necrosis virus translational enhancer domain contribute differentially to stimulation of translation.

作者信息

van Lipzig Rosalinde, Gultyaev Alexander P, Pleij Cornelis W A, van Montagu Marc, Cornelissen Marc, Meulewaeter Frank

机构信息

Vakgroep Moleculaire Genetica, Universiteit Gent, Belgium.

出版信息

RNA. 2002 Feb;8(2):229-36. doi: 10.1017/s1355838202018071.

Abstract

The translational enhancer domain (TED) of satellite tobacco necrosis virus (STNV) RNA stimulates translation of uncapped RNAs autonomously. Here we set out to identify the 5' and 3' extremities of TED and features of these sequences with respect to translation. We found that both in wheat germ extract and in tobacco protoplasts, the 5' border is confined to 3 nt. Mutational analysis revealed that the autonomous function of TED is sensitive to 5' flanking sequences. At the 3' end of TED, 23 nt have a cumulative, quantitative effect on translation in wheat germ extract, whereas in tobacco protoplasts, the most 3' 14 nt of these 23 nt do not enhance translation. The 5' and 3' sequence requirements triggered the development of a new secondary structure model. In this model, TED folds into a phylogenetically conserved stem-loop structure in which the essential 5' nucleotides base-pair with the 3' nucleotides that stimulate translation both in vitro and in vivo. Importantly, the 14 3' nucleotides in TED that stimulate translation in the wheat germ extract only do not require the predicted base-pairing in order to function. The discrepancy between in vitro and in vivo sequence requirements thus correlates with potential base-pairing requirements, opening the possibility that TED contains two functional domains.

摘要

烟草坏死卫星病毒(STNV)RNA的翻译增强子结构域(TED)可自主刺激无帽RNA的翻译。在此,我们着手确定TED的5'和3'末端以及这些序列在翻译方面的特征。我们发现,无论是在小麦胚芽提取物还是烟草原生质体中,5'边界都局限于3个核苷酸。突变分析表明,TED的自主功能对5'侧翼序列敏感。在TED的3'末端,23个核苷酸对小麦胚芽提取物中的翻译具有累积的定量影响,而在烟草原生质体中,这23个核苷酸中最3'端的14个核苷酸并不能增强翻译。5'和3'序列要求促使我们开发了一种新的二级结构模型。在该模型中,TED折叠成一种系统发育保守的茎环结构,其中必不可少的5'核苷酸与在体外和体内均能刺激翻译的3'核苷酸形成碱基对。重要的是,TED中仅在小麦胚芽提取物中刺激翻译的14个3'核苷酸在发挥功能时不需要预测的碱基配对。因此,体外和体内序列要求之间的差异与潜在的碱基配对要求相关,这表明TED可能包含两个功能域。

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