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Stability of gene rankings from RNAi screens

机译:RNAi筛选中基因排名的稳定性

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Motivation: Genome-wide RNA interference (RNAi) experiments are becoming a widely used approach for identifying intracellular molecular pathways of specific functions. However, detecting all relevant genes involved in a biological process is challenging, because typically only few samples per gene knock-down are available and readouts tend to be very noisy. We investigate the reliability of top scoring hit lists obtained from RNAi screens, compare the performance of different ranking methods, and propose a new ranking method to improve the reproducibility of gene selection. Results: The performance of different ranking methods is assessed by the size of the stable sets they produce, i.e. the subsets of genes which are estimated to be re-selected with high probability in independent validation experiments. Using stability selection, we also define a new ranking method, called stability ranking, to improve the stability of any given base ranking method. Ranking methods based on mean, median, t-test and rank-sum test, and their stability-augmented counterparts are compared in simulation studies and on three microscopy image RNAi datasets. We find that the rank-sum test offers the most favorable trade-off between ranking stability and accuracy and that stability ranking improves the reproducibility of all and the accuracy of several ranking methods.
机译:动机:全基因组RNA干扰(RNAi)实验正成为识别特定功能的细胞内分子途径的一种广泛使用的方法。但是,检测与生物过程有关的所有相关基因都是具有挑战性的,因为通常每个基因敲除仅可获得少量样品,并且读数往往非常嘈杂。我们调查了从RNAi筛选中获得的最高得分命中列表的可靠性,比较了不同排名方法的性能,并提出了一种新的排名方法来提高基因选择的可重复性。结果:不同排序方法的性能由它们产生的稳定集的大小来评估,即在独立的验证实验中估计高概率重新选择的基因子集。使用稳定性选择,我们还定义了一种新的排名方法,称为稳定性排名,以提高任何给定基本排名方法的稳定性。在模拟研究和三个显微镜图像RNAi数据集中比较了基于均值,中位数,t检验和秩和检验的排序方法,以及其稳定性增强的对应方法。我们发现,等级和检验在等级稳定性和准确性之间提供了最有利的折衷,而稳定性等级改善了所有等级的可重复性和几种等级方法的准确性。

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