RNAMotifProfile:一种基于图谱的 RNA 结构主题图谱构建方法。

IF 4 Q1 GENETICS & HEREDITY
NAR Genomics and Bioinformatics Pub Date : 2024-09-26 eCollection Date: 2024-09-01 DOI:10.1093/nargab/lqae128
Md Mahfuzur Rahaman, Shaojie Zhang
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引用次数: 0

摘要

RNA 结构基团是 RNA 三维结构中反复出现的片段,对 RNA 的功能多样性起着至关重要的作用。要深入了解 RNA 的结构和功能,就必须了解这些重复出现的结构基团的相似性和变异性。虽然人们通常认为递归结构基团是由相同的同位碱基相互作用组成的,但在这些基团的所有实例中并没有观察到这种一致的模式。现有的分析和比较 RNA 结构主题的方法可能会忽略碱基相互作用和相关核苷酸的变化。RNAMotifProfile 是一种新颖的轮廓对轮廓配准算法,它能从一组结构主题中生成一个综合轮廓,其中包含所有碱基相互作用和每个位置上的相关核苷酸。RNAMotifProfile 采用基于向导树的方法对输入的主题实例进行结构比对,从而捕捉到重复出现的主题组内的相似性和变异性。此外,RNAMotifProfile 还可用作主题搜索工具,通过相应的配置文件进行搜索,从而识别特定主题族的实例。为 RNA 结构主题族生成准确而全面的剖面图并搜索这些主题的能力,有助于加深对 RNA 结构-功能关系的理解,以及在 RNA 工程和治疗设计中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
RNAMotifProfile: a graph-based approach to build RNA structural motif profiles.

RNA structural motifs are the recurrent segments in RNA three-dimensional structures that play a crucial role in the functional diversity of RNAs. Understanding the similarities and variations within these recurrent motif groups is essential for gaining insights into RNA structure and function. While recurrent structural motifs are generally assumed to be composed of the same isosteric base interactions, this consistent pattern is not observed across all examples of these motifs. Existing methods for analyzing and comparing RNA structural motifs may overlook variations in base interactions and associated nucleotides. RNAMotifProfile is a novel profile-to-profile alignment algorithm that generates a comprehensive profile from a group of structural motifs, incorporating all base interactions and associated nucleotides at each position. By structurally aligning input motif instances using a guide-tree-based approach, RNAMotifProfile captures the similarities and variations within recurrent motif groups. Additionally, RNAMotifProfile can function as a motif search tool, enabling the identification of instances of a specific motif family by searching with the corresponding profile. The ability to generate accurate and comprehensive profiles for RNA structural motif families, and to search for these motifs, facilitates a deeper understanding of RNA structure-function relationships and potential applications in RNA engineering and therapeutic design.

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来源期刊
CiteScore
8.00
自引率
2.20%
发文量
95
审稿时长
15 weeks
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