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Differential distribution improves gene selection stability and has competitive classification performance for patient survival

机译:差异分布提高了基因选择的稳定性并具有竞争性的分类性能可提高患者生存率

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摘要

A consistent difference in average expression level, often referred to as differential expression (DE), has long been used to identify genes useful for classification. However, recent cancer studies have shown that when transcription factors or epigenetic signals become deregulated, a change in expression variability (DV) of target genes is frequently observed. This suggests that assessing the importance of genes by either differential expression or variability alone potentially misses sets of important biomarkers that could lead to improved predictions and treatments. Here, we describe a new approach for assessing the importance of genes based on differential distribution (DD), which combines information from differential expression and differential variability into a unified metric. We show that feature ranking and selection stability based on DD can perform two to three times better than DE or DV alone, and that DD yields equivalent error rates to DE and DV. Finally, assessing genes via differential distribution produces a complementary set of selected genes to DE and DV, potentially opening up new categories of biomarkers.
机译:长期以来,人们一直使用平均表达水平的一致差异(通常称为差异表达(DE))来鉴定可用于分类的基因。但是,最近的癌症研究表明,当转录因子或表观遗传信号变得失调时,经常会观察到靶基因表达变异性(DV)的变化。这表明仅通过差异表达或变异性评估基因的重要性可能会错过重要的生物标志物,从而可能导致更好的预测和治疗。在这里,我们描述了一种基于差异分布(DD)评估基因重要性的新方法,该方法将来自差异表达和差异变异性的信息组合到一个统一的度量标准中。我们表明,基于DD的特征排名和选择稳定性比单独的DE或DV可以提高2到3倍,并且DD产生的误差率与DE和DV相当。最后,通过差异分布评估基因可产生与DE和DV互补的一组选定基因,从而有可能开启生物标记的新类别。

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