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Multiple Mechanisms of Reinitiation on Bicistronic Calicivirus mRNAs

机译:双顺反子杯状病毒mRNAs重新启动的多种机制。

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摘要

Reinitiation is a strategy used by viruses to express several cistrons from one mRNA. Although extremely weak after translation of long open reading frames (ORFs) on cellular mRNAs, reinitiation occurs efficiently on subgenomic bicistronic calicivirus mRNAs, enabling synthesis of minor capsid proteins. The process is governed by a short element upstream of the restart AUG, designated "termination upstream ribosomal binding site'' (TURBS). It contains the conserved Motif 1 complementary to h26 of 18S rRNA, displayed in the loop of a hairpin formed by species-specific Motifs 2/2*. To determine the advantages conferred on reinitiation by TURBS, we reconstituted this process in vitro on two model bicistronic calicivirus mRNAs. We found that posttermination ribosomal tethering of mRNA by TURBS allows reinitiation by post-termination 80S ribosomes and diminishes dependence on eukaryotic initiation factor 3 (eIF3) of reinitiation by recycled 40S subunits, which can be mediated either by eIFs 2/1/1A or by Ligatin following ABCE1-dependent or -independent splitting of post-termination complexes.
机译:重新初始化是病毒用来从一个mRNA表达多个顺反子的策略。尽管在细胞mRNA上翻译了较长的开放阅读框(ORF)后极其弱,但是在亚基因组双顺反子杯状病毒mRNA上有效地进行了重新初始化,从而能够合成较小的衣壳蛋白。此过程由重新启动AUG上游的一个短分子(称为“终止上游核糖体结合位点”(TURBS))控制,它包含与18S rRNA h26互补的保守Motif 1,显示在物种形成的发夹环中特异性基序2/2 *。为了确定TURBS重新启动所带来的优势,我们在体外对两个模型双顺反子杯状病毒mRNA进行了重新构建,发现通过TURBS终止mRNA的核糖体束缚可以通过终止后的80S核糖体和减少了通过回收的40S亚基重新启动对真核起始因子3(eIF3)的依赖性,这可以通过eIF 2/1 / 1A或Ligatin介导,后者取决于终止复合物的ABCE1依赖性或非依赖性分裂。

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