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首页> 外文期刊>Nucleic Acids Research >Structural determinants of an internal ribosome entry site that direct translational reading frame selection
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Structural determinants of an internal ribosome entry site that direct translational reading frame selection

机译:内部核糖体进入位点的结构决定因素,指导翻译阅读框的选择

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摘要

The dicistrovirus intergenic internal ribosome entry site (IGR IRES) directly recruits the ribosome and initiates translation using a non-AUG codon. A subset of IGR IRESs initiates translation in either of two overlapping open reading frames (ORFs), resulting in expression of the 0 frame viral structural polyprotein and an overlapping +1 frame ORFx. A U-G base pair adjacent to the anticodon-like pseudoknot of the IRES directs +1 frame translation. Here, we show that the U-G base pair is not absolutely required for +1 frame translation. Extensive mutagenesis demonstrates that 0 and +1 frame translation can be uncoupled. Ribonucleic acid (RNA) structural probing analyses reveal that the mutant IRESs adopt distinct conformations. Toeprinting analysis suggests that the reading frame is selected at a step downstream of ribosome assembly. We propose a model whereby the IRES adopts conformations to occlude the 0 frame aminoacyl-tRNA thereby allowing delivery of the +1 frame aminoacyl-tRNA to the A site to initiate translation of ORFx. This study provides a new paradigm for programmed recoding mechanisms that increase the coding capacity of a viral genome.
机译:双顺反病毒基因间内部核糖体进入位点(IGR IRES)直接募集核糖体并使用非AUG密码子启动翻译。 IGR IRES的子集在两个重叠的开放阅读框(ORF)中的一个中启动翻译,从而导致0框病毒结构多蛋白和+1框ORFx的表达。与IRES的反密码子样假结相邻的U-G碱基对指导+1帧翻译。在这里,我们显示+1帧转换并非绝对需要U-G碱基对。广泛的诱变表明0和+1帧翻译可以解耦。核糖核酸(RNA)的结构探测分析表明,突变的IRES采用不同的构象。脚印分析表明阅读框是在核糖体装配的下游选择的。我们提出了一个模型,其中IRES采用构象来封闭0帧氨基酰基-tRNA,从而允许将+1帧氨基酰基-tRNA传递至A位点以启动ORFx的翻译。这项研究为编程的编码机制提供了新的范例,该机制增加了病毒基因组的编码能力。

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