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用于估计序列轮廓与序列轮廓比对得分统计显著性的岛方法。

Island method for estimating the statistical significance of profile-profile alignment scores.

作者信息

Poleksic Aleksandar

机构信息

Department of Computer Science, University of Northern Iowa, Cedar Falls, IA 50614, USA.

出版信息

BMC Bioinformatics. 2009 Apr 20;10:112. doi: 10.1186/1471-2105-10-112.

Abstract

BACKGROUND

In the last decade, a significant improvement in detecting remote similarity between protein sequences has been made by utilizing alignment profiles in place of amino-acid strings. Unfortunately, no analytical theory is available for estimating the significance of a gapped alignment of two profiles. Many experiments suggest that the distribution of local profile-profile alignment scores is of the Gumbel form. However, estimating distribution parameters by random simulations turns out to be computationally very expensive.

RESULTS

We demonstrate that the background distribution of profile-profile alignment scores heavily depends on profiles' composition and thus the distribution parameters must be estimated independently, for each pair of profiles of interest. We also show that accurate estimates of statistical parameters can be obtained using the "island statistics" for profile-profile alignments.

CONCLUSION

The island statistics can be generalized to profile-profile alignments to provide an efficient method for the alignment score normalization. Since multiple island scores can be extracted from a single comparison of two profiles, the island method has a clear speed advantage over the direct shuffling method for comparable accuracy in parameter estimates.

摘要

背景

在过去十年中,通过使用比对轮廓代替氨基酸序列串,在检测蛋白质序列之间的远程相似性方面取得了显著进展。不幸的是,尚无用于估计两个轮廓的带间隙比对显著性的分析理论。许多实验表明,局部轮廓-轮廓比对分数的分布呈耿贝尔分布形式。然而,通过随机模拟估计分布参数在计算上非常昂贵。

结果

我们证明,轮廓-轮廓比对分数的背景分布很大程度上取决于轮廓的组成,因此必须针对每对感兴趣的轮廓独立估计分布参数。我们还表明,使用轮廓-轮廓比对的“岛统计”可以获得统计参数的准确估计值。

结论

岛统计可以推广到轮廓-轮廓比对,以提供一种有效的比对分数归一化方法。由于可以从两个轮廓的单次比较中提取多个岛分数,因此在参数估计的可比精度方面,岛方法相对于直接洗牌方法具有明显的速度优势。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85c5/2678096/a346eaf037c1/1471-2105-10-112-1.jpg

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