Suppr超能文献

基于树分解的快速搜索基因组中包括假结在内的RNA结构

Tree decomposition based fast search of RNA structures including pseudoknots in genomes.

作者信息

Song Yinglei, Liu Chunmei, Malmberg Russell, Pan Fangfang, Cai Liming

机构信息

Department of Computer Science, University of Georgia, Athens, GA 30602, USA.

出版信息

Proc IEEE Comput Syst Bioinform Conf. 2005:223-34. doi: 10.1109/csb.2005.52.

Abstract

Searching genomes for RNA secondary structure with computational methods has become an important approach to the annotation of non-coding RNAs. However, due to the lack of efficient algorithms for accurate RNA structure-sequence alignment, computer programs capable of fast and effectively searching genomes for RNA secondary structures have not been available. In this paper, a novel RNA structure profiling model is introduced based on the notion of a conformational graph to specify the consensus structure of an RNA family. Tree decomposition yields a small tree width t for such conformation graphs (e.g., t = 2 for stem loops and only a slight increase for pseudo-knots). Within this modelling framework, the optimal alignment of a sequence to the structure model corresponds to finding a maximum valued isomorphic subgraph and consequently can be accomplished through dynamic programming on the tree decomposition of the conformational graph in time O(k(t)N(2)), where k is a small parameter; and N is the size of the projiled RNA structure. Experiments show that the application of the alignment algorithm to search in genomes yields the same search accuracy as methods based on a Covariance model with a significant reduction in computation time. In particular; very accurate searches of tmRNAs in bacteria genomes and of telomerase RNAs in yeast genomes can be accomplished in days, as opposed to months required by other methods. The tree decomposition based searching tool is free upon request and can be downloaded at our site h t t p ://w.uga.edu/RNA-informatics/software/index.php.

摘要

利用计算方法在基因组中搜索RNA二级结构已成为非编码RNA注释的重要方法。然而,由于缺乏用于准确RNA结构-序列比对的高效算法,能够快速有效地在基因组中搜索RNA二级结构的计算机程序一直未出现。本文基于构象图的概念引入了一种新颖的RNA结构分析模型,以确定RNA家族的共有结构。树分解为此类构象图产生较小的树宽t(例如,茎环的t = 2,假结的树宽仅略有增加)。在此建模框架内,序列与结构模型的最优比对对应于找到一个具有最大值的同构子图,因此可以通过对构象图的树分解进行动态规划,在时间O(k(t)N(2))内完成,其中k是一个小参数,N是所分析RNA结构的大小。实验表明,将比对算法应用于基因组搜索,其搜索准确性与基于协方差模型的方法相同,但计算时间显著减少。特别是,可以在数天内完成对细菌基因组中tmRNA和酵母基因组中端粒酶RNA的非常准确的搜索,而其他方法则需要数月时间。基于树分解的搜索工具可应要求免费获取,可从我们的网站http://w.uga.edu/RNA-informatics/software/index.php下载。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验