首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Biochemical and functional analysis of a 9-nt RNA sequence that affects translation efficiency in eukaryotic cells.
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Biochemical and functional analysis of a 9-nt RNA sequence that affects translation efficiency in eukaryotic cells.

机译:影响真核细胞翻译效率的9-nt RNA序列的生化和功能分析。

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We previously identified an internal ribosome entry site (IRES) within the 5' leader of the mRNA encoding the Gtx homeodomain protein and showed that shorter nonoverlapping segments of this 5' leader could enhance the translation of a second cistron in a dicistronic mRNA. One of these segments was 9 nt in length, and when multiple copies of this IRES module were linked together, IRES activity was greatly enhanced. To further expand the potential uses of these synthetic constructs and facilitate analyses of the mechanism by which they affect translation, we show here that an IRES containing five linked copies of the 9-nt sequence can also enhance translation in the 5' leader of a monocistronic mRNA. Moreover, a search for interactions of the IRES module with cellular factors revealed specific binding to 40S ribosomal subunits but not to other cellular components. Based on the results of earlier studies suggesting that this sequence could bind to a complementary segment of 18S rRNA, we tested various sequences for possible links between the length of the complementary match, their binding to ribosomes, and their influence on translational efficiency. We found that the length of the complementary match was directly correlated with the ability of RNA probes to bind to ribosomes. In addition, translation was maximally enhanced ( approximately 8-fold) by a 7-nt segment of the 9-nt element; the enhancement declined progressively as the complementary stretches became progressively longer or shorter. The results suggest that the Gtx 9-nt sequence affects translation efficiency by a mechanism that involves base pairing to 18S rRNA.
机译:我们之前在编码Gtx同源域蛋白的mRNA的5'前导序列中发现了一个内部核糖体进入位点(IRES),并表明该5'前导序列的较短非重叠片段可以增强双顺反子mRNA中第二个顺反子的翻译。这些片段之一的长度为9 nt,当将此IRES模块的多个副本链接在一起时,IRES活性大大增强。为了进一步扩展这些合成构建体的潜在用途并促进对其影响翻译机制的分析,我们在此处显示包含5个9-nt序列的链接拷贝的IRES也可以增强单顺反子5'前导序列的翻译。 mRNA。此外,对IRES模块与细胞因子的相互作用的研究揭示了与40S核糖体亚基的特异性结合,但与其他细胞成分没有特异性结合。根据较早的研究结果,该序列可以与18S rRNA的互补片段结合,我们针对互补序列的长度,与核糖体的结合及其对翻译效率的影响之间的可能联系,测试了各种序列。我们发现互补匹配的长度与RNA探针结合核糖体的能力直接相关。另外,通过9-nt元件的7-nt区段最大程度地增强了翻译(大约8倍)。随着互补性拉伸变得更长或更短,增强逐渐降低。结果表明,Gtx 9-nt序列通过涉及与18S rRNA碱基配对的机制影响翻译效率。

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