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烟草蚀纹病毒5'前导区内依赖帽子结构的翻译所需功能元件的鉴定与表征

Identification and characterization of the functional elements within the tobacco etch virus 5' leader required for cap-independent translation.

作者信息

Niepel M, Gallie D R

机构信息

Department of Biochemistry, University of California, Riverside, California 92521-0129, USA.

出版信息

J Virol. 1999 Nov;73(11):9080-8. doi: 10.1128/JVI.73.11.9080-9088.1999.

Abstract

Translation in plants is highly cap dependent, and the only plant mRNAs known to naturally lack a cap structure (m(7)GpppN) are viral in origin. The genomic RNA of tobacco etch virus (TEV), a potyvirus that belongs to the picornavirus superfamily, is a polyadenylated mRNA that is naturally uncapped and yet is a highly competitive mRNA during translation. The 143-nucleotide 5' leader is responsible for conferring cap-independent translation even on reporter mRNAs. We have carried out a deletion analysis of the TEV 5' leader to identify the elements responsible for its regulatory function and have identified two centrally located cap-independent regulatory elements (CIREs) that promote cap-independent translation. The introduction of a stable stem-loop structure upstream of each element demonstrated that CIRE-1 is less 5' end dependent in function than CIRE-2. In a dicistronic mRNA, the presence of the TEV 5' leader sequence in the intercistronic region increased expression of the second cistron, suggesting that the viral sequence can function in a 5'-distal position. Interestingly, the introduction of a stable stem-loop upstream of the TEV leader sequence or upstream of either CIRE in dicistronic constructs markedly increased their regulatory function. These data suggest that the TEV 5' leader contains two elements that together promote internal initiation but that the function of one element, in particular, is facilitated by proximity to the 5' end.

摘要

植物中的翻译高度依赖于帽子结构,已知天然缺乏帽子结构(m⁷GpppN)的植物mRNA均源自病毒。烟草蚀纹病毒(TEV)是一种属于小核糖核酸病毒超家族的马铃薯Y病毒,其基因组RNA是一种多聚腺苷酸化的mRNA,天然无帽,但在翻译过程中却是一种极具竞争力的mRNA。143个核苷酸的5'端前导序列即使对于报告基因mRNA也能赋予不依赖帽子的翻译能力。我们对TEV 5'端前导序列进行了缺失分析,以确定负责其调控功能的元件,并鉴定出两个位于中心位置的不依赖帽子的调控元件(CIREs),它们能促进不依赖帽子的翻译。在每个元件上游引入稳定的茎环结构表明,CIRE-1在功能上比CIRE-2对5'端的依赖性更小。在双顺反子mRNA中,顺反子间区域存在TEV 5'端前导序列会增加第二个顺反子的表达,这表明病毒序列可在5'端远端位置发挥作用。有趣的是,在双顺反子构建体中,在TEV前导序列上游或任一CIRE上游引入稳定的茎环结构会显著增强其调控功能。这些数据表明,TEV 5'端前导序列包含两个共同促进内部起始的元件,但其中一个元件的功能,特别是靠近5'端时会更易发挥作用。

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