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Pattern Recognition Method to Detect Vulnerable Spots in an RNA Sequence for Bacterial Resistance to the Antibiotic Spectinomycin

机译:模式识别方法检测RNA序列中对抗生素大观霉素的细菌耐药性的弱点

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This paper describes an efficient pattern recognition method for detecting vulnerable spots within an RNA sequence. Mutations in these spots may lead to a structural change that directly relates to a change in functionality. Previously, the concept was tried on RNA genetic control elements called ‘riboswitches’ and other known RNA switches. Here, the concept is extended to assist in planning in-vivo experiments in general, using a new tool that we have developed called RNAMute. We apply the package RNAMute on an RNA transcript that was shown experimentally to inactivate spectinomycin resistance in Escherichia coli by creating a library of point mutations using PCR and screening to locate those mutations. Our prediction, conducted independently of the known experimental results, succeeds in matching the inactivating point mutations that were obtained by the selection experiment. Validation of the method with data available from laboratory experiment supports its use as a general predictive tool.
机译:本文介绍了一种有效的模式识别方法,可用于检测RNA序列中的易损点。这些斑点的突变可能会导致结构上的变化,而结构上的变化与功能的变化直接相关。此前,该概念曾在称为“核糖开关”的RNA基因控制元件和其他已知的RNA开关上进行过尝试。在这里,使用我们开发的新工具RNAMute扩展了该概念,以协助总体上计划体内实验。我们将RNAMute包应用于RNA转录本,该转录本已通过实验证明可通过使用PCR创建点突变库并筛选以定位那些突变来灭活大肠杆菌中的壮观霉素抗性。我们的预测与已知的实验结果无关,成功地匹配了通过选择实验获得的失活点突变。用实验室实验中可用的数据对方法进行验证,支持将其用作一般的预测工具。

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