An algorithm for detecting homologues of known structured RNAs in genomes.

Shu-Yun Le, Jacob V Maizel, Kaizhong Zhang
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引用次数: 9

Abstract

Distinct RNA structures are frequently involved in a wide-range of functions in various biological mechanisms. The three dimensional RNA structures solved by X-ray crystallography and various well-established RNA phylogenetic structures indicate that functional RNAs have characteristic RNA structural motifs represented by specific combinations of base pairings and conserved nucleotides in the loop region. Discovery of well-ordered RNA structures and their homologues in genome-wide searches will enhance our ability to detect the RNA structural motifs and help us to highlight their association with functional and regulatory RNA elements. We present here a novel computer algorithm, HomoStRscan, that takes a single RNA sequence with its secondary structure to search for homologous-RNAs in complete genomes. This novel algorithm completely differs from other currently used search algorithms of homologous structures or structural motifs. For an arbitrary segment (or window) given in the target sequence, that has similar size to the query sequence, HomoStRscan finds the most similar structure to the input query structure and computes the maximal similarity score (MSS) between the two structures. The homologousRNA structures are then statistically inferred from the MSS distribution computed in the target genome. The method provides a flexible, robust and fine search tool for any homologous structural RNAs.

一种检测基因组中已知结构rna同源物的算法。
不同的RNA结构经常在各种生物机制中参与广泛的功能。通过x射线晶体学解决的三维RNA结构和各种已建立的RNA系统发育结构表明,功能性RNA具有由碱基对和环区保守核苷酸的特定组合所代表的特征RNA结构基序。在全基因组搜索中发现有序的RNA结构及其同源物将增强我们检测RNA结构基序的能力,并帮助我们突出它们与功能和调控RNA元件的关联。我们在这里提出了一种新的计算机算法,HomoStRscan,它采用单个RNA序列及其二级结构来搜索完整基因组中的同源RNA。该算法与现有的同源结构或结构基序搜索算法完全不同。对于目标序列中给定的与查询序列大小相似的任意段(或窗口),homstrscan会找到与输入查询结构最相似的结构,并计算这两个结构之间的最大相似度分数(MSS)。同源rna结构,然后统计推断从MSS分布计算的目标基因组。该方法为任何同源结构rna的搜索提供了灵活、稳健和精细的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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