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RNA 序列共变中替代结构的进化证据。

Evolutionary evidence for alternative structure in RNA sequence co-variation.

机构信息

Department of Biology, University of North Carolina, Chapel Hill, North Carolina, United States of America.

出版信息

PLoS Comput Biol. 2013;9(7):e1003152. doi: 10.1371/journal.pcbi.1003152. Epub 2013 Jul 25.

Abstract

Sequence conservation and co-variation of base pairs are hallmarks of structured RNAs. For certain RNAs (e.g. riboswitches), a single sequence must adopt at least two alternative secondary structures to effectively regulate the message. If alternative secondary structures are important to the function of an RNA, we expect to observe evolutionary co-variation supporting multiple conformations. We set out to characterize the evolutionary co-variation supporting alternative conformations in riboswitches to determine the extent to which alternative secondary structures are conserved. We found strong co-variation support for the terminator, P1, and anti-terminator stems in the purine riboswitch by extending alignments to include terminator sequences. When we performed Boltzmann suboptimal sampling on purine riboswitch sequences with terminators we found that these sequences appear to have evolved to favor specific alternative conformations. We extended our analysis of co-variation to classic alignments of group I/II introns, tRNA, and other classes of riboswitches. In a majority of these RNAs, we found evolutionary evidence for alternative conformations that are compatible with the Boltzmann suboptimal ensemble. Our analyses suggest that alternative conformations are selected for and thus likely play functional roles in even the most structured of RNAs.

摘要

序列保守性和碱基对的共变是结构 RNA 的标志。对于某些 RNA(例如核酶),单一序列必须至少采用两种替代二级结构才能有效地调节信息。如果替代二级结构对 RNA 的功能很重要,我们期望观察到支持多种构象的进化共变。我们着手描述核酶中支持替代构象的进化共变,以确定替代二级结构的保守程度。我们通过扩展比对来包括终止序列,发现嘌呤核酶中的终止子、P1 和反终止子茎具有很强的共变支持。当我们对具有终止子的嘌呤核酶序列进行玻尔兹曼次优采样时,我们发现这些序列似乎已经进化到有利于特定的替代构象。我们将共变分析扩展到了 I/II 类内含子、tRNA 和其他类核酶的经典比对中。在这些 RNA 中的大多数中,我们发现了与玻尔兹曼次优集合兼容的替代构象的进化证据。我们的分析表明,替代构象是被选择的,因此即使在最具结构的 RNA 中,它们也可能发挥功能作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b641/3723493/9ca8ec963302/pcbi.1003152.g001.jpg

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