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A new Motzkin class for joint RNA secondary structures

机译:一种新的Motzkin类用于联合RNA二级结构

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摘要

In general RNA prediction problem includes genetic mapping, physical mapping and structure prediction. The ultimate goal of structure prediction is to obtain the three dimensional structure of bimolecules through computation. The key concept for solving the above mentioned problem is the appropriate representation of the biological structures. Even though, the problems that concern representations of certain biological structures like secondary structures either are characterized as NP-complete or with high complexity, few approximation algorithms and techniques had been constructed, mainly with polynomial complexity, concerning the prediction of RNA secondary structures. In this paper, a new class of Motzkin paths is introduced, the so-called semi-elevated inverse Motzkin peakless paths for the representation of two interacting RNA molecules. The basic combinatorial interpretations on single RNA secondary structures are extended via these new Motzkin paths on two RNA molecules and can be applied to the prediction methods of joint structures formed by interacting RNAs.
机译:通常,RNA预测问题包括遗传作图,物理作图和结构预测。结构预测的最终目的是通过计算获得双分子的三维结构。解决上述问题的关键概念是对生物结构的适当表示。即使有关某些生物结构(如二级结构)的表征的问题被表征为NP完全或具有高复杂性,但针对RNA二级结构的预测,构建的近似算法和技术(主要是多项式复杂性)却很少。在本文中,引入了一类新的Motzkin路径,即用于表示两个相互作用的RNA分子的所谓的半高倒Motzkin逆无峰路径。通过两个RNA分子上的新Motzkin路径扩展了单个RNA二级结构的基本组合解释,并可应用于通过相互作用的RNA形成的关节结构的预测方法。

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