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Optimization criteria and biological process enrichment in homologous multiprotein modules

机译:同源多蛋白模块的优化标准和生物过程富集

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摘要

Biological process enrichment is a widely used metric for evaluating the quality of multiprotein modules. In this study, we examine possible optimization criteria for detecting homologous multiprotein modules and quantify their effects on biological process enrichment. We find that modularity, linear density, and module size are the most important criteria considered, complementary to each other, and that graph theoretical attributes account for 36% of the variance in biological process enrichment. Variations in protein interaction similarity within module pairs have only minor effects on biological process enrichment. As random modules increase in size, both biological process enrichment and modularity tend to improve, although modularity does not show this upward trend in modules with size at most 50 proteins. To adjust for these trends, we recommend a size correction based on random sampling of modules when using biological process enrichment or other attributes to evaluate module boundaries. Characteristics of homologous multiprotein modules optimized for each of the optimization criteria are examined.
机译:生物过程富集是评估多蛋白模块质量的一种广泛使用的指标。在这项研究中,我们检查了检测同源多蛋白模块的可能优化标准,并量化了它们对生物过程富集的影响。我们发现模块性,线性密度和模块大小是考虑的最重要标准,彼此互补,并且图的理论属性占生物过程富集变化的36%。模块对内蛋白质相互作用相似性的变化对生物过程富集只有很小的影响。随着随机模块大小的增加,尽管模块性在具有最多50个蛋白质的模块中没有显示出这种上升趋势,但是生物学过程的富集和模块化都趋于改善。为了适应这些趋势,我们建议在使用生物过程富集或其他属性评估模块边界时,基于模块的随机抽样进行尺寸校正。检查针对每个优化标准优化的同源多蛋白模块的特征。

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