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Possible Transitions Between Types of Pseudoknots of RNA Structure

机译:RNA结构假结类型之间可能的过渡

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There are several dynamic programming methods for predicting RNA secondary structures with pseudoknots, but reasonable and efficient ways which are constructed by some kinds of structures is difficult, the structure can be equipped with prescribed and expected energies in RNAlocmin. In this paper. According to the BHG and MFE principle, we present the algorithms to improve theγ1-structure in Boltzmann sampling. The experiments by the software package called gfold indicates that improving γ1-structure as an instance is very efficient, and we also implement the transitions between different types of pseudoknots.
机译:有几种用伪结预测RNA二级结构的动态编程方法,但是用某种结构构建合理而有效的方法是困难的,该结构可以在RNAlocmin中配备规定的和预期的能量。在本文中。根据BHG和MFE原理,我们提出了改进Boltzmann采样中的γ1结构的算法。通过名为gfold的软件包进行的实验表明,作为实例改善γ1结构非常有效,而且我们还实现了不同类型的伪结之间的过渡。

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