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Exact Calculation of Distributions on Integers with Application to Sequence Alignment

机译:整数分布的精确计算及其在序列比对中的应用

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摘要

Computational biology is replete with high-dimensional discrete prediction and inference problems. Dynamic programming recursions can be applied to several of the most important of these, including sequence alignment, RNA secondary-structure prediction, phylogenetic inference, and motif finding. In these problems, attention is frequently focused on some scalar quantity of interest, a score, such as an alignment score or the free energy of an RNA secondary structure. In many cases, score is naturally defined on integers, such as a count of the number of pairing differences between two sequence alignments, or else an integer score has been adopted for computational reasons, such as in the test of significance of motif scores. The probability distribution of the score under an appropriate probabilistic model is of interest, such as in tests of significance of motif scores, or in calculation of Bayesian confidence limits around an alignment. Here we present three algorithms for calculating the exact distribution of a score of this type; then, in the context of pairwise local sequence alignments, we apply the approach so as to find the alignment score distribution and Bayesian confidence limits.
机译:计算生物学充满了高维离散预测和推理问题。动态编程递归可以应用于其中的几个最重要的递归,包括序列比对,RNA二级结构预测,系统发育推断和基序发现。在这些问题中,注意力通常集中在目标标量上,诸如比对得分或RNA二级结构的自由能之类的得分。在许多情况下,分数自然是在整数上定义的,例如对两个序列比对之间配对差异数的计数,或者出于计算原因,例如在测试主题分数的重要性时,采用了整数分数。在适当的概率模型下得分的概率分布是令人感兴趣的,例如在测试主题得分的显着性或计算比对中的贝叶斯置信极限时。在这里,我们提出了三种算法来计算这种类型分数的确切分布;然后,在成对局部序列比对的情况下,我们应用该方法来找到比对分数分布和贝叶斯置信限。

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