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Determining the calibration of confidence estimation procedures for unique peptides in shotgun proteomics

机译:确定霰弹枪蛋白质组学中独特肽置信度估算程序的校准

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摘要

The analysis of a shotgun proteomics experiment results in a list of peptide-spectrum matches (PSMs) in which each fragmentation spectrum has been matched to a peptide in a database. Subsequently, most protein inference algorithms rank peptides according to the best-scoring PSM for each peptide. However, there is disagreement in the scientific literature on the best method to assess the statistical significance of the resulting peptide identifications. Here, we use a previously described calibration protocol to evaluate the accuracy of three different peptide-level statistical confidence estimation procedures: the classical Fisher’s method, and two complementary procedures that estimate significance, respectively, before and after selecting the top-scoring PSM for each spectrum. Our experiments show that the latter method, which is employed by MaxQuant and Percolator, produces the most accurate, well-calibrated results.
机译:a弹枪蛋白质组学实验的分析产生了一个肽谱匹配(PSM)列表,其中每个片段谱已与数据库中的肽匹配。随后,大多数蛋白质推论算法会根据每种肽的最佳评分PSM对肽进行排名。然而,在科学文献中,关于评估所得肽鉴定的统计学意义的最佳方法尚存在分歧。在这里,我们使用先前描述的校准协议来评估三种不同的肽水平统计置信度估计程序的准确性:经典的Fisher方法和两个互补的程序,分别为每个选择得分最高的PSM之前和之后估计重要性光谱。我们的实验表明,MaxQuant和Percolator所采用的后一种方法可产生最准确,经过最佳校准的结果。

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