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首页> 外文期刊>Journal of chemical information and modeling >Tertiary Structure Prediction of RNA?RNA Complexes Using a Secondary Structure and Fragment-Based Method
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Tertiary Structure Prediction of RNA?RNA Complexes Using a Secondary Structure and Fragment-Based Method

机译:使用二级结构和基于片段的方法预测RNA?RNA复合物的三级结构

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摘要

A method has been developed for predicting the tertiary structures of RNA?RNA complex structures using secondary structure information and a fragment assembly algorithm. The linker base pair and secondary structure potential derived from the secondary structure information are particularly useful for prediction. Application of this method to several kinds of RNA? RNA complex structures, including kissing loops, hammerhead ribozymes, and other functional RNAs, produced promising results. Use of the secondary structure potential effectively restrained the conformational search space, leading to successful prediction of kissing loop structures, which mainly consist of common structural elements. The failure to predict more difficult targets had various causes but should be overcome through such measures as tuning the balance of the energy contributions from the Watson?Crick and non- Watson?Crick base pairs, by obtaining knowledge about a wider variety of RNA structures.
机译:已经开发出一种利用二级结构信息和片段装配算法来预测RNA→RNA复合物结构的三级结构的方法。从二级结构信息得出的接头碱基对和二级结构电势对于预测特别有用。这种方法在几种RNA中的应用? RNA复杂结构(包括接吻环,锤头状核酶和其他功能性RNA)产生了可喜的结果。二级结构电位的使用有效地限制了构象搜索空间,从而成功预测了主要由常见结构元素组成的接吻环结构。无法预测更困难的目标有多种原因,但应通过获取有关更多种类的RNA结构的知识来调整诸如Watson?Crick和非Watson?Crick碱基对的能量贡献平衡,从而克服这一问题。

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