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使用受限结构比对检测RNA分子中的保守二级结构。

Detecting conserved secondary structures in RNA molecules using constrained structural alignment.

作者信息

Khaladkar Mugdha, Patel Vandanaben, Bellofatto Vivian, Wilusz Jeffrey, Wang Jason T L

机构信息

Bioinformatics Program and Department of Computer Science, New Jersey Institute of Technology, Newark, NJ 07102, USA.

出版信息

Comput Biol Chem. 2008 Aug;32(4):264-72. doi: 10.1016/j.compbiolchem.2008.03.013. Epub 2008 Apr 8.

Abstract

Constrained sequence alignment has been studied extensively in the past. Different forms of constraints have been investigated, where a constraint can be a subsequence, a regular expression, or a probability matrix of symbols and positions. However, constrained structural alignment has been investigated to a much lesser extent. In this paper, we present an efficient method for constrained structural alignment and apply the method to detecting conserved secondary structures, or structural motifs, in a set of RNA molecules. The proposed method combines both sequence and structural information of RNAs to find an optimal local alignment between two RNA secondary structures, one of which is a query and the other is a subject structure in the given set. The method allows a biologist to annotate conserved regions, or constraints, in the query RNA structure and incorporates these regions into the alignment process to obtain biologically more meaningful alignment scores. A statistical measure is developed to assess the significance of the scores. Experimental results based on detecting internal ribosome entry sites in the RNA molecules of hepatitis C virus and Trypanosoma brucei demonstrate the effectiveness of the proposed method and its superiority over existing techniques.

摘要

过去,受限序列比对已得到广泛研究。人们研究了不同形式的约束,其中一个约束可以是一个子序列、一个正则表达式,或者是符号和位置的概率矩阵。然而,受限结构比对的研究程度要小得多。在本文中,我们提出了一种用于受限结构比对的有效方法,并将该方法应用于检测一组RNA分子中的保守二级结构或结构基序。所提出的方法结合了RNA的序列和结构信息,以在两个RNA二级结构之间找到最优局部比对,其中一个是查询结构,另一个是给定集合中的主体结构。该方法允许生物学家在查询RNA结构中注释保守区域或约束,并将这些区域纳入比对过程,以获得生物学上更有意义的比对分数。开发了一种统计量度来评估分数的显著性。基于检测丙型肝炎病毒和布氏锥虫RNA分子中内部核糖体进入位点的实验结果证明了所提出方法的有效性及其相对于现有技术的优越性。

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