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The RNAmute web server for the mutational analysis of RNA secondary structures

机译:RNAmute Web服务器用于RNA二级结构的突变分析

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RNA mutational analysis at the secondary-structure level can be useful to a wide-range of biological applications. It can be used to predict an optimal site for performing a nucleotide mutation at the single molecular level, as well as to analyze basic phenomena at the systems level. For the former, as more sequence modification experiments are performed that include site-directed mutagenesis to find and explore functional motifs in RNAs, a pre-processing step that helps guide in planning the experiment becomes vital. For the latter, mutations are generally accepted as a central mechanism by which evolution occurs, and mutational analysis relating to structure should gain a better understanding of system functionality and evolution. In the past several years, the program RNAmute that is structure based and relies on RNA secondary-structure prediction has been developed for assisting in RNA mutational analysis. It has been extended from single-point mutations to treat multiple-point mutations efficiently by initially calculating all suboptimal solutions, after which only the mutations that stabilize the suboptimal solutions and destabilize the optimal one are considered as candidates for being deleterious. The RNAmute web server for mutational analysis is available at http://www.cs.bgu.ac.il/~xrnamute/XRNAmute.
机译:在二级结构水平的RNA突变分析可用于广泛的生物学应用。它可用于预测在单分子水平上进行核苷酸突变的最佳位点,以及在系统水平上分析基本现象。对于前者,随着进行更多的序列修饰实验(包括定点诱变)以发现和探索RNA中的功能基序,有助于指导实验计划的预处理步骤变得至关重要。对于后者,突变通常被认为是发生进化的主要机制,并且与结构有关的突变分析应该更好地理解系统功能和进化。在过去的几年中,已经开发了基于结构并依赖于RNA二级结构预测的RNAmute程序,以协助进行RNA突变分析。它已从单点突变扩展为通过最初计算所有次优解决方案来有效地处理多点突变,此后,只有稳定次优解决方案并使最佳解不稳定的突变才被视为有害的候选对象。用于突变分析的RNAmute Web服务器可从http://www.cs.bgu.ac.il/~xrnamute/XRNAmute获得。

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