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False Positive Rate Determination of Protein Target Discovery using a Covalent Modification- and Mass Spectrometry-Based Proteomics Platform

机译:基于共价修饰和质谱的蛋白质组学平台蛋白质目标发现的假阳性率测定

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摘要

Detection and quantitation of protein-ligand binding interactions is important in many areas of biological research. The Stability of Proteins from Rates of Oxidation (SPROX) technique is an energetics-based technique for identifying the proteins targets of ligands in complex biological mixtures. Knowing the false positive rate of protein target discovery in proteome-wide SPROX experiments is important for the correct interpretation of results. Reported here are the results of a control SPROX experiment in which chemical denaturation data is obtained on the proteins in two samples that originated from the same yeast lysate, as would be done in a typical SPROX experiment except that one sample would be spiked with the test ligand. False positive rates of 1.2–2.2% and <0.8% are calculated for SPROX experiments using Q-TOF and orbitrap mass spectrometer systems, respectively. Our results indicate that the false positive rate is largely determined by random errors associated with the mass spectral analysis of the isobaric mass tag (e.g., iTRAQ®) reporter ions used for peptide quantitation. Our results also suggest that technical replicates can be used to effectively eliminate such false positives that result from this random error, as is demonstrated in a SPROX experiment to identify yeast protein targets of the drug, manassantin A. The impact of ion purity in the tandem mass spectral analyses and of background oxidation on the false positive rate of protein target discovery using SPROX is also discussed.
机译:蛋白和配体结合相互作用的检测和定量在生物学研究的许多领域都很重要。氧化速率的蛋白质稳定性(SPROX)技术是一种基于能量学的技术,用于鉴定复杂生物混合物中配体的蛋白质靶标。了解蛋白质组范围的SPROX实验中蛋白质靶标发现的假阳性率对于正确解释结果很重要。此处报告的是对照SPROX实验的结果,其中从同一酵母裂解物中得到的两个样品中的蛋白质均获得了化学变性数据,就像典型的SPROX实验中所做的一样,只是其中一个样品会加标配体。使用Q-TOF和orbitrap质谱仪系统进行的SPROX实验的假阳性率分别为1.2–2.2%和<0.8%。我们的结果表明,假阳性率很大程度上取决于与用于肽定量的等压质量标签(例如iTRAQ ®)报告离子的质谱分析相关的随机误差。我们的结果还表明,技术复制可用于有效消除这种随机错误导致的假阳性,如在SPROX实验中证实的那样,以鉴定药物的酵母蛋白靶标(Manassantin A)。串联离子纯度的影响还讨论了质谱分析和背景氧化对使用SPROX进行蛋白质靶标发现的假阳性率的影响。

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