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Exploring the repertoire of RNA secondary motifs using graph theory; implications for RNA design

机译:使用图论探索RNA二级基序的组成;对RNA设计的影响

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Understanding the structural repertoire of RNA is crucial for RNA genomics research. Yet current methods for finding novel RNAs are limited to small or known RNA families. To expand known RNA structural motifs, we develop a two-dimensional graphical representation approach for describing and estimating the size of RNA's secondary structural repertoire, including naturally occurring and other possible RNA motifs. We employ tree graphs to describe RNA tree motifs and more general (dual) graphs to describe both RNA tree and pseudoknot motifs. Our estimates of RNA's structural space are vastly smaller than the nucleotide sequence space, suggesting a new avenue for finding novel RNAs. Specifically our survey shows that known RNA trees and pseudoknots represent only a small subset of all possible motifs, implying that some of the 'missing' motifs may represent novel RNAs. To help pinpoint RNA-like motifs, we show that the motifs of existing functional RNAs are clustered in a narrow range of topological characteristics. We also illustrate the applications of our approach to the design of novel RNAs and automated comparison of RNA structures; we report several occurrences of RNA motifs within larger RNAs. Thus, our graph theory approach to RNA structures has implications for RNA genomics, structure analysis and design.
机译:了解RNA的结构库对于RNA基因组学研究至关重要。然而,目前发现新颖RNA的方法限于小的或已知的RNA家族。为了扩展已知的RNA结构基序,我们开发了一种二维图形表示方法来描述和估计RNA二级结构库的大小,包括天然存在的和其他可能的RNA基序。我们使用树形图来描述RNA树形图案,并使用更一般的(双重)图来描述RNA树形和假结形图案。我们对RNA的结构空间的估计远远小于核苷酸序列空间,这为寻找新的RNA提供了一条新途径。具体而言,我们的调查显示,已知的RNA树和假结仅代表所有可能基序的一小部分,这意味着某些“缺失”基序可能代表了新颖的RNA。为了帮助查明类似RNA的基序,我们显示了现有功能性RNA的基序聚集在狭窄的拓扑特征范围内。我们还将说明我们的方法在新型RNA设计和RNA结构自动比较中的应用;我们报告了在较大的RNA中出现了几次RNA图案。因此,我们对RNA结构的图论方法对RNA基因组学,结构分析和设计具有重要意义。

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