首页> 外文期刊>In silico biology: An international on computational biology >STR2: A structure to string approach for locating G-box riboswitch shapes in pre-selected genes
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STR2: A structure to string approach for locating G-box riboswitch shapes in pre-selected genes

机译:STR2:一种用于定位预选基因中 G 盒核糖开关形状的结构到串的方法

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摘要

Traditional sequence-based search methods such as BLAST and FASTA can be used to identify sequence similarities. Recently, there is a growing interest in performing RNA shape similarity searches inside selected genes to locate RNA structure motifs that are known to possess functionally important roles. For example, in the newly discovered RNA genetic control elements called "riboswitches", the box domain is known to be highly conserved among various bacterial species in both its nucleotide composition and shape. However, in non-bacterial species, shape conservation is likely to become more important than sequence conservation when searching for riboswitch patterns. For this purpose, we present an approach tailored for detecting RNA shape similarities. We extend the Structure to String (STR2) method that was initially proposed to locate shape similarities in proteins to identify predicted secondary structures of RNAs. The STR2 for RNAs is a translation of a secondary structure to a string of characters, after which known sequence-based search algorithms with an efficient implementation are being used. We validate that the STR2 succeeds to locate G-box riboswitches in prokaryotes, as expected. Subsequently we show running examples when attempting to detect G-box riboswitch candidates in eukaryotes.
机译:传统的基于序列的搜索方法,如BLAST和FASTA可用于识别序列相似性。最近,人们越来越有兴趣在选定的基因内进行RNA形状相似性搜索,以定位已知具有重要功能作用的RNA结构基序。例如,在新发现的称为“核糖开关”的RNA遗传控制元件中,已知盒子结构域在各种细菌物种中的核苷酸组成和形状都高度保守。然而,在非细菌物种中,在寻找核糖开关模式时,形状守恒可能比序列守恒更重要。为此,我们提出了一种为检测RNA形状相似性而量身定制的方法。我们扩展了结构到字符串 (STR2) 方法,该方法最初被提出用于定位蛋白质中的形状相似性,以识别预测的 RNA 二级结构。RNA 的 STR2 是二级结构到字符串的翻译,之后使用具有有效实现的已知基于序列的搜索算法。我们验证 STR2 是否如预期的那样成功定位原核生物中的 G-box 核糖开关。随后,我们展示了尝试检测真核生物中 G 盒核糖开关候选者的运行示例。

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