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A Ribosome-Binding 3′ Translational Enhancer Has a T-Shaped Structure and Engages in a Long-Distance RNA-RNA Interaction

机译:核糖体结合的3翻译增强子具有T形的结构并参与长距离RNA RNA相互作用。

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摘要

Many plant RNA viruses contain elements in their 3′ untranslated regions (3′ UTRs) that enhance translation. The PTE (Panicum mosaic virus-like translational enhancer) of Pea enation mosaic virus (PEMV) binds to eukaryotic initiation factor 4E (eIF4E), but how this affects translation from the 5′ end is unknown. We have discovered a three-way branched element just upstream of the PEMV PTE that engages in a long-distance kissing-loop interaction with a coding sequence hairpin that is critical for the translation of a reporter construct and the accumulation of the viral genome in vivo. Loss of the long-distance interaction was more detrimental than elimination of the adjacent PTE, indicating that the RNA-RNA interaction supports additional translation functions besides relocating the PTE to the 5′ end. The branched element is predicted by molecular modeling and molecular dynamics to form a T-shaped structure (TSS) similar to the ribosome-binding TSS of Turnip crinkle virus (TCV). The PEMV element binds to plant 80S ribosomes with a Kd (dissociation constant) of 0.52 μM and to 60S subunits with a Kd of 0.30 μM. Unlike the TCV TSS, the PEMV element also binds 40S subunits (Kd, 0.36 μM). Mutations in the element that suppressed translation reduced either ribosome binding or the RNA-RNA interaction, suggesting that ribosome binding is important for function. This novel, multifunctional element is designated a kl-TSS (kissing-loop T-shaped structure) to distinguish it from the TCV TSS. The kl-TSS has sequence and structural features conserved with the upper portion of most PTE-type elements, which, with the exception of the PEMV PTE, can engage in similar long-distance RNA-RNA interactions.
机译:许多植物RNA病毒在其3'非翻译区(3'UTR)中包含增强翻译的元件。豌豆化花叶病毒(PEMV)的PTE(花生花叶病毒样翻译增强子)与真核起始因子4E(eIF4E)结合,但是如何影响5'末端的翻译尚不清楚。我们在PEMV PTE的上游发现了一个三向分支元件,该元件与编码序列发夹进行长距离接吻-环相互作用,这对于报告基因构建体的翻译和体内病毒基因组的积累至关重要。长距离相互作用的丧失比消除相邻的PTE更有害,这表明RNA-RNA相互作用除了将PTE重新定位到5'末端外还支持其他翻译功能。通过分子建模和分子动力学预测该支链元件形成类似于萝卜ip皱病毒(TCV)的核糖体结合TSS的T形结构(TSS)。 PEMV元素以0.52μM的Kd(解离常数)结合植物80S核糖体,以0.30μM的Kd结合60S亚基。与TCV TSS不同,PEMV元件还结合40S亚基(Kd,0.36μM)。抑制翻译的元件中的突变降低了核糖体结合或RNA-RNA相互作用,这表明核糖体结合对功能很重要。这种新颖的多功能元件称为kl-TSS(吻合环T形结构),以区别于TCV TSS。 kl-TSS具有与大多数PTE类型元件的上部保守的序列和结构特征,除了PEMV PTE之外,其可以参与相似的长距离RNA-RNA相互作用。

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