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Local Absence of Secondary Structure Permits Translation of mRNAs that Lack Ribosome-Binding Sites

机译:二级结构的局部缺失允许缺乏核糖体结合位点的mRNA的翻译。

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摘要

The initiation of translation is a fundamental and highly regulated process in gene expression. Translation initiation in prokaryotic systems usually requires interaction between the ribosome and an mRNA sequence upstream of the initiation codon, the so-called ribosome-binding site (Shine-Dalgarno sequence). However, a large number of genes do not possess Shine-Dalgarno sequences, and it is unknown how start codon recognition occurs in these mRNAs. We have performed genome-wide searches in various groups of prokaryotes in order to identify sequence elements and/or RNA secondary structural motifs that could mediate translation initiation in mRNAs lacking Shine-Dalgarno sequences. We find that mRNAs without a Shine-Dalgarno sequence are generally less structured in their translation initiation region and show a minimum of mRNA folding at the start codon. Using reporter gene constructs in bacteria, we also provide experimental support for local RNA unfoldedness determining start codon recognition in Shine-Dalgarno–independent translation. Consistent with this, we show that AUG start codons reside in single-stranded regions, whereas internal AUG codons are usually in structured regions of the mRNA. Taken together, our bioinformatics analyses and experimental data suggest that local absence of RNA secondary structure is necessary and sufficient to initiate Shine-Dalgarno–independent translation. Thus, our results provide a plausible mechanism for how the correct translation initiation site is recognized in the absence of a ribosome-binding site.
机译:翻译的启动是基因表达中的一个基本且高度受控的过程。原核系统中的翻译起始通常需要核糖体与起始密码子上游的mRNA序列(即所谓的核糖体结合位点)(Shine-Dalgarno序列)相互作用。但是,许多基因不具有Shine-Dalgarno序列,并且未知在这些mRNA中如何发生起始密码子识别。我们已经在原核生物的各个组中进行了全基因组搜索,以鉴定可介导缺乏Shine-Dalgarno序列的mRNA的翻译起始的序列元件和/或RNA二级结构基序。我们发现没有Shine-Dalgarno序列的mRNA通常在其翻译起始区域结构较少,并且在起始密码子处显示出最小的mRNA折叠。使用细菌中的报告基因构建体,我们还为确定Shine-Dalgarno独立翻译中起始密码子识别的局部RNA展开提供了实验支持。与此相符,我们表明AUG起始密码子位于单链区域,而内部AUG密码子通常位于mRNA的结构化区域。综上所述,我们的生物信息学分析和实验数据表明,RNA二级结构的局部缺失是启动Shine-Dalgarno独立翻译的必要和充分条件。因此,我们的结果提供了对于在没有核糖体结合位点的情况下如何识别正确的翻译起始位点的合理机制。

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