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Splicing mediates the activity of four putative cellular internal ribosome entry sites

机译:剪接介导四个假定的细胞内部核糖体进入位点的活性

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摘要

A growing number of cellular mRNAs are thought to possess internal ribosome entry sites (IRESs), sequences that permit translation of a transcript independent of its 5′ end and cap structure. Although dicistronic assays are the canonical method of testing sequences for IRES activity, they may produce false-positive results if unanticipated monocistronic RNAs arise from the dicistronic construct used. Using a dicistronic reporter system and a green fluorescent protein-tagged retrovirus to evaluate six previously reported cellular IRESs, we found that four contain 3′ splice sites whose activity was required for apparent IRES function and which resulted in formation of monocistronic transcripts by splicing. Bioinformatic analysis revealed that the 3′ splice sites identified in three of these putative IRESs are used in their native mRNAs and that the fourth is likely an artifactual sequence created during cDNA cloning. Our findings demonstrate a need for reexamination of other reported cellular IRESs by using careful RNA structural analysis to rule out splicing as the source of perceived IRES activity.
机译:越来越多的细胞mRNA被认为具有内部核糖体进入位点(IRESs),即允许转录物独立于其5'末端和帽结构翻译的序列。尽管双顺反子测定法是测试IRES活性序列的规范方法,但如果使用的双顺反子构建物产生了意外的单顺反子RNA,它们可能会产生假阳性结果。使用双顺反子报告系统和绿色荧光蛋白标记的逆转录病毒评估六个先前报道的细胞IRES,我们发现四个含有3'剪接位点,其活性是表观IRES功能所必需的,并导致通过剪接形成单顺反子转录本。生物信息学分析表明,在这些推定的IRES中的三个中鉴定出的3'剪接位点用于其天然mRNA,第四个可能是在cDNA克隆过程中产生的人为序列。我们的发现表明,通过使用仔细的RNA结构分析以排除剪接作为感知到的IRES活性的来源,需要对其他报道的细胞IRES进行重新检查。

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