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The ensemble diversity of non-coding RNA structure is lower than random sequence

机译:非编码RNA结构的集合多样性低于随机序列

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摘要

In addition to energetically optimal structures, RNAs can fold into near energy suboptimal conformations that may be populated and play functional roles. The diversity of this structural ensemble can be estimated using a metric derived from the calculated RNA partition function: the ensemble diversity. In this report, 10 classes of functional RNAs were analyzed: the 5.8S and 5S rRNAs, ribozyme, RNase P, snoRNA, snRNA, SRP RNA, tmRNA, Vault RNA and Y RNA. Representative sequences from each class were mutagenized in two ways: firstly, all possible point mutations were generated and secondly, wild type sequences were randomized to generate multiple scrambled mutants. Compared to the mutants, the native RNA ensemble diversity was predicted to be lower. This finding held true when all available sequences (378,455 sequences) for each RNA class (archived in the RNAcentral database) were analyzed. This suggests that a compact structural ensemble is an evolved characteristic of functional RNAs.
机译:除了在能量上最优化的结构外,RNA还可折叠成可能填充的近能量次优构象,并发挥功能性作用。可以使用从计算得出的RNA分配函数得出的指标来估算此结构性集合的多样性:集合多样性。在本报告中,分析了10类功能性RNA:5.8S和5S rRNA,核酶,RNase P,snoRNA,snRNA,SRP RNA,tmRNA,Vault RNA和Y RNA。来自每个类别的代表性序列通过两种方式诱变:首先,生成所有可能的点突变,其次,将野生型序列随机化以生成多个加扰的突变体。与突变体相比,天然RNA的集合多样性预计较低。当分析每个RNA类的所有可用序列(378,455个序列)(在RNAcentral数据库中存档)时,这一发现成立。这表明紧凑的结构集合是功能性RNA的进化特征。

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