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首页> 外文期刊>Bioinformatics >Characterizing molecular adaptation: a hierarchical approach to assess the selective influence of amino acid properties.
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Characterizing molecular adaptation: a hierarchical approach to assess the selective influence of amino acid properties.

机译:表征分子适应性:一种评估氨基酸特性选择性影响的分层方法。

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摘要

MOTIVATION: A number of methods for detecting positive selection in protein coding DNA sequences are based on whether each site/region has a non-synonymous to synonymous substitution rates ratio greater than one. However, a site/region may show a relatively large number of non-synonymous mutations that conserve a particular property. Recent methods have proposed to consider as evidence for molecular adaptations how conserving, or radically different, non-synonymous mutations are with respect to some key amino acid properties. While such methods have been useful in providing a qualitative assessment of molecular adaptation, they rely on independent statistical analyses for each amino acid property and typically do not properly adjust for multiple comparisons when selection needs to be assessed at several sites. RESULTS: We consider a Bayesian hierarchical model that allows us to jointly determine if a set of amino acid properties are being conserved or radically changed while simultaneously adjusting for multiple comparisons at the codon level. We illustrate how this model can be used to characterize molecular adaptation in two datasets: an alignment from six class I alleles of the human major histocompatibility complex and a sperm lysin alignment from 25 abalone species. We compare the results obtained with the proposed hierarchical models to those obtained with alternative methods. Our analyses indicate that a more complete quantitative and qualitative characterization of molecular adaptation is achieved by taking into account changes in amino acid properties. AVAILABILITY: The R code for implementing the hierarchical models is freely available at http://www.ams.ucsc.edu/~raquel/software/.
机译:动机:许多检测蛋白质编码DNA序列中阳性选择的方法是基于每个位点/区域的同义替代率与同义替换率之比是否大于1。但是,一个位点/区域可能会显示出相对大量的保留特定特性的非同义突变。最近的方法已经提出考虑作为分子适应的证据,关于某些关键氨基酸特性,保守性或根本不同的非同义突变是如何的。尽管此类方法可用于提供分子适应性的定性评估,但它们依赖于每种氨基酸特性的独立统计分析,并且当需要在多个位点评估选择时,通常无法正确调整多个比较。结果:我们考虑了贝叶斯层次模型,该模型允许我们共同确定一组氨基酸特性是保守的还是根本改变的,同时可以在密码子水平上进行多重比较。我们说明了该模型如何用于表征两个数据集中的分子适应性:来自人类主要组织相容性复合体的六个I类等位基因的比对和来自25个鲍鱼物种的精子赖氨酸比对。我们将通过提议的层次模型获得的结果与通过替代方法获得的结果进行比较。我们的分析表明,通过考虑氨基酸特性的变化,可以实现分子适应性的更完整的定量和定性表征。可用性:用于实现层次模型的R代码可从http://www.ams.ucsc.edu/~raquel/software/免费获得。

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