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首页> 外文期刊>Journal of Molecular Biology >Topological classification of RNA structures.
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Topological classification of RNA structures.

机译:RNA结构的拓扑分类。

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摘要

We present a novel topological classification of RNA secondary structures with pseudoknots. It is based on the topological genus of the circular diagram associated to the RNA base-pair structure. The genus is a positive integer number whose value quantifies the topological complexity of the folded RNA structure. In such a representation, planar diagrams correspond to pure RNA secondary structures and have zero genus, whereas non-planar diagrams correspond to pseudoknotted structures and have higher genus. The topological genus allows for the definition of topological folding motifs, similar in spirit to those introduced and commonly used in protein folding. We analyze real RNA structures from the databases Worldwide Protein Data Bank and Pseudobase and classify them according to their topological genus. For simplicity, we limit our analysis by considering only Watson-Crick complementary base pairs and G-U wobble base pairs. We compare the results of our statistical survey with existing theoretical and numerical models. We also discuss possible applications of this classification and show how it can be used for identifying new RNA structural motifs.
机译:我们提出了带有假结的RNA二级结构的新型拓扑分类。它基于与RNA碱基对结构相关的圆形图的拓扑属。属是一个正整数,其值量化了折叠RNA结构的拓扑复杂性。在这样的表示中,平面图对应于纯RNA二级结构并且具有零属,而非平面图对应于假结结构并且具有较高的属。拓扑属允许定义拓扑折叠基序,其本质上与引入并通常用于蛋白质折叠的基序相似。我们从全球蛋白质数据库和Pseudobase数据库中分析真实的RNA结构,并根据其拓扑属对其进行分类。为简单起见,我们仅考虑Watson-Crick互补碱基对和G-U摆动碱基对来限制我们的分析。我们将统计调查的结果与现有的理论和数值模型进行比较。我们还将讨论该分类的可能应用,并展示如何将其用于识别新的RNA结构基序。

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