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首页> 外文期刊>EURASIP journal on bioinformatics and systems biology >Efficient Alignment of RNAs with Pseudoknots Using Sequence Alignment Constraints
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Efficient Alignment of RNAs with Pseudoknots Using Sequence Alignment Constraints

机译:使用序列比对约束的伪结RNA的有效比对。

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When aligning RNAs, it is important to consider both the secondary structure similarity and primary sequence similarity to find an accurate alignment. However, algorithms that can handle RNA secondary structures typically have high computational complexity that limits their utility. For this reason, there have been a number of attempts to find useful alignment constraints that can reduce the computations without sacrificing the alignment accuracy. In this paper, we propose a new method for finding effective alignment constraints for fast and accurate structural alignment of RNAs, including pseudoknots. In the proposed method, we use a profile-HMM to identify the a€?seeda€ regions that can be aligned with high confidence. We also estimate the position range of the aligned bases that are located outside the seed regions. The location of the seed regions and the estimated range of the alignment positions are then used to establish the sequence alignment constraints. We incorporated the proposed constraints into the profile context-sensitive HMM (profile-csHMM) based RNA structural alignment algorithm. Experiments indicate that the proposed method can make the alignment speed up to 11 times faster without degrading the accuracy of the RNA alignment.
机译:比对RNA时,重要的是要考虑二级结构相似性和一级序列相似性以找到准确的比对。但是,可以处理RNA二级结构的算法通常具有较高的计算复杂度,从而限制了其实用性。由于这个原因,已经进行了许多尝试来寻找有用的对准约束,这些约束可以减少计算而不会牺牲对准精度。在本文中,我们提出了一种新的方法,该方法可找到有效的比对约束条件,以快速,准确地对RNA(包括假结)进行结构比对。在所提出的方法中,我们使用轮廓HMM来识别可以高置信度对齐的左眼区域。我们还估计了位于种子区域外部的对齐碱基的位置范围。然后将种子区域的位置和比对位置的估计范围用于建立序列比对约束条件。我们将提出的约束纳入基于轮廓上下文敏感的HMM(profile-csHMM)基于RNA的结构比对算法。实验表明,所提出的方法可以使比对速度加快11倍,而不会降低RNA比对的准确性。

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