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枚举环状RNA的二级结构和结构部分。

Enumerating secondary structures and structural moieties for circular RNAs.

作者信息

Cuesta Jose A, Manrubia Susanna

机构信息

Grupo Interdisciplinar de Sistemas Complejos (GISC), Spain; Departamento de Matemáticas, Universidad Carlos III de Madrid, Spain; Institute for Biocomputation and Physics of Complex Systems, Zaragoza, Spain; UC3M-BS Institute of Financial Big Data (IFiBiD), Spain.

Grupo Interdisciplinar de Sistemas Complejos (GISC), Spain; National Biotechnology Centre (CSIC), Madrid, Spain.

出版信息

J Theor Biol. 2017 Apr 21;419:375-382. doi: 10.1016/j.jtbi.2017.02.024. Epub 2017 Feb 21.

Abstract

A quantitative characterization of the relationship between molecular sequence and structure is essential to improve our understanding of how function emerges. This particular genotype-phenotype map has been often studied in the context of RNA sequences, with the folded configurations standing as a proxy for the phenotype. Here, we count the secondary structures of circular RNAs of length n and calculate the asymptotic distributions of different structural moieties, such as stems or hairpin loops, by means of symbolic combinatorics. Circular RNAs differ in essential ways from their linear counterparts. From the mathematical viewpoint, the enumeration of the corresponding secondary structures demands the use of combinatorial techniques additional to those used for linear RNAs. The asymptotic number of secondary structures for circular RNAs grows as an, with a depending on particular constraints applied to the secondary structure. As it occurs with linear RNA, the abundance of any structural moiety is normally distributed in the limit n→∞, with a mean and a variance that increase linearly with n.

摘要

对分子序列与结构之间的关系进行定量表征,对于增进我们对功能如何产生的理解至关重要。这种特定的基因型-表型图谱经常在RNA序列的背景下进行研究,其中折叠构型作为表型的替代物。在这里,我们计算长度为n的环状RNA的二级结构,并通过符号组合学计算不同结构部分(如茎或发夹环)的渐近分布。环状RNA与其线性对应物在本质上有所不同。从数学角度来看,对相应二级结构的计数需要使用除用于线性RNA之外的组合技术。环状RNA二级结构的渐近数量以an的形式增长,其中a取决于应用于二级结构的特定约束。与线性RNA一样,任何结构部分的丰度在n→∞的极限情况下呈正态分布,其均值和方差随n线性增加。

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