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首页> 外文期刊>Molecular & cellular proteomics: MCP >Discovering Mercury Protein Modifications in Whole Proteomes Using Natural Isotope Distributions Observed in Liquid Chromatography-Tandem Mass Spectrometry
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Discovering Mercury Protein Modifications in Whole Proteomes Using Natural Isotope Distributions Observed in Liquid Chromatography-Tandem Mass Spectrometry

机译:使用液相色谱-串联质谱法观察到的自然同位素分布发现整个蛋白质组中的汞蛋白修饰

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The identification of peptides that result from post-trans-lational modifications is critical for understanding normal pathways of cellular regulation as well as identifying damage from, or exposures to xenobiotics, i.e. the exposome. However, because of their low abundance in proteomes, effective detection of modified peptides by mass spec-trometry (MS) typically requires enrichment to eliminate false identifications. We present a new method for confidently identifying peptides with mercury (Hg)-containing adducts that is based on the influence of mercury's seven stable isotopes on peptide isotope distributions detected by high-resolution MS. Using a pure protein and E. coli cultures exposed to phenyl mercuric acetate, we show the pattern of peak heights in isotope distributions from primary MS single scans efficiently identified Hg adducts in data from chromatographic separation coupled with tandem mass spectrometry with sensitivity and specificity greater than 90%. Isotope distributions are independent of peptide identifications based on peptide fragmentation (e.g. by SEQUEST), so both methods can be combined to eliminate false positives. Summing peptide isotope distributions across multiple scans improved specificity to 99.4% and sensitivity above 95%, affording identification of an unexpected Hg modification. We also illustrate the theoretical applicability of the method for detection of several less common elements including the essential element, selenium, as selenocys-teine in peptides.
机译:从翻译后修饰中得到的肽的鉴定对于理解细胞调节的正常途径以及鉴定来自或暴露于异源生物即暴露体的损害是至关重要的。但是,由于它们在蛋白质组中的丰度低,因此通过质谱(MS)有效检测修饰的肽通常需要进行浓缩以消除错误的鉴定。我们基于汞的七个稳定同位素对高分辨率质谱检测到的肽同位素分布的影响,提出了一种新的方法来自信地鉴定含汞(Hg)的加合物的肽。使用纯蛋白质和暴露于乙酸苯汞的大肠杆菌培养物,我们显示了来自主要MS单次扫描的同位素分布中的峰高模式,可在色谱分离和串联质谱法联用的数据中有效地鉴定出汞加合物,其灵敏度和特异性均大于90%。同位素分布与基于肽片段化的肽鉴定无关(例如通过SEQUEST),因此可以将两种方法结合使用以消除假阳性。跨多次扫描总结的肽同位素分布将特异性提高到99.4%,灵敏度提高到95%以上,从而鉴定出意外的Hg修饰。我们还说明了该方法用于检测几种较不常见的元素(包括必需元素硒)作为肽中的硒代半胱氨酸的方法的理论适用性。

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