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RAG: RNA-As-Graphs web resource

机译:愤怒:在Rana-S-Graphs网站资源中

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Background The proliferation of structural and functional studies of RNA has revealed an increasing range of RNA's structural repertoire. Toward the objective of systematic cataloguing of RNA's structural repertoire, we have recently described the basis of a graphical approach for organizing RNA secondary structures, including existing and hypothetical motifs. Description We now present an RNA motif database based on graph theory, termed RAG for RNA-As-Graphs, to catalogue and rank all theoretically possible, including existing, candidate and hypothetical, RNA secondary motifs. The candidate motifs are predicted using a clustering algorithm that classifies RNA graphs into RNA-like and non-RNA groups. All RNA motifs are filed according to their graph vertex number (RNA length) and ranked by topological complexity. Conclusions RAG's quantitative cataloguing allows facile retrieval of all classes of RNA secondary motifs, assists identification of structural and functional properties of user-supplied RNA sequences, and helps stimulate the search for novel RNAs based on predicted candidate motifs.
机译:背景技术RNA的结构和功能研究的激增揭示了RNA的结构范围越来越广。为了对RNA的结构库进行系统分类的目的,我们最近描述了用于组织RNA二级结构(包括现有和假设的基序)的图形方法的基础。描述现在,我们介​​绍一个基于图论的RNA基序数据库,称为RAG for RNA-As-Graphs,对所有理论上可能的目录进行分类和排序,包括现有的,候选的和假设的RNA次要基序。使用聚类算法预测候选基序,该聚类算法将RNA图分为RNA类和非RNA组。所有RNA基序均根据其图顶点数(RNA长度)进行归档,并按拓扑复杂性进行排名。结论RAG的定量分类功能可以轻松检索所有类别的RNA二级基序,帮助鉴定用户提供的RNA序列的结构和功能特性,并有助于基于预测的候选基序刺激对新型RNA的搜索。

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