Characterization of structural features for small regulatory RNAs in Escherichia coli genomes

S. Le, B. Shapiro
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Abstract

Small regulatory RNAs are highly abundant noncoding RNAs (ncRNA) found in bacterial genomes. These small regulatory ncRNAs (sRNAs) can regulate the synthesis of proteins by mediating mRNA transcription, translation and stability. Furthermore, they also control the activity of specific proteins by binding to them. In this study, we present a general computational approach for identifying the distinct structure of sRNAs in the Escherichia coli (E. coli) genome by a quantitative measure, Ediff that is the energy difference between the optimal structure folded from a sequence segment and its corresponding optimal restrained structure where all base pairings formed in the original optimal structure are excluded. Our results indicate that most of the known small ncRNAs in E. coli K12 have very high normalized Ediff scores with high statistical significance. These sRNAs have distinct well-ordered structures that are both thermodynamically stable and uniquely folded.
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大肠杆菌基因组中小调控rna的结构特征表征
小调控rna是在细菌基因组中发现的高度丰富的非编码rna (ncRNA)。这些小调控ncRNAs (sRNAs)可以通过介导mRNA的转录、翻译和稳定性来调控蛋白质的合成。此外,它们还通过与特定蛋白质的结合来控制它们的活性。在这项研究中,我们提出了一种通用的计算方法,通过定量测量Ediff来识别大肠杆菌(E. coli)基因组中sRNAs的不同结构,Ediff是从序列片段折叠的最佳结构与其相应的最佳限制结构之间的能量差,其中原始最佳结构中形成的所有碱基对都被排除。我们的研究结果表明,大肠杆菌K12中大多数已知的小ncrna具有非常高的标准化Ediff评分,具有很高的统计学意义。这些sRNAs具有独特的有序结构,既具有热力学稳定性,又具有独特的折叠。
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