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首页> 外文期刊>Proteomics >Over 4100 protein identifications from a Xenopus laevis fertilized egg digest using reversed-phase chromatographic prefractionation followed by capillary zone electrophoresis-electrospray ionization-tandem mass spectrometry analysis
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Over 4100 protein identifications from a Xenopus laevis fertilized egg digest using reversed-phase chromatographic prefractionation followed by capillary zone electrophoresis-electrospray ionization-tandem mass spectrometry analysis

机译:使用反相色谱预分离,然后进行毛细管区带电泳-电喷雾电离-串联质谱分析,从非洲爪蟾受精卵消化物中鉴定出超过4100种蛋白质

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摘要

A tryptic digest generated from Xenopus laevis fertilized embryos was fractionated by RPLC. One set of 30 fractions was analyzed by 100-min CZE-ESI-MS/MS separations (50 h total instrument time), and a second set of 15 fractions was analyzed by 3-h UPLC-ESI-MS/MS separations (45 h total instrument time). CZE-MS/MS produced 70% as many protein IDs (4134 versus 5787) and 60% as many peptide IDs (22 535 versus 36 848) as UPLC-MS/MS with similar instrument time (50 h versus 45 h) but with 50 times smaller total consumed sample amount (1.5 mu g versus 75 mu g). Surprisingly, CZE generated peaks that were 25% more intense than UPLC for peptides that were identified by both techniques, despite the 50-fold lower loading amount; this high sensitivity reflects the efficient ionization produced by the electrokinetically pumped nanospray interface used in CZE. This report is the first comparison of CZE-MS/MS and UPLC-MS/MS for large-scale eukaryotic proteomic analysis. The numbers of protein and peptide identifications produced by CZE-ESI-MS/MS approach those produced by UPLC-MS/MS, but with nearly two orders of magnitude lower sample amounts.
机译:由非洲爪蟾受精胚胎产生的胰蛋白酶消化物通过RPLC分级分离。一组30个馏分通过100分钟的CZE-ESI-MS / MS分离进行分析(仪器总时间为50小时),第二组15个馏分通过3小时的UPLC-ESI-MS / MS / MS分离进行分析(45 h仪器总时间)。 CLU-MS / MS与UPLC-MS / MS相比,在相同的仪器时间下(50 h对45 h)产生的蛋白质ID(4134对5787)和肽ID(22 535对36848)分别是70%和50%总消耗样品量减少了50倍(1.5克与75克)。出乎意料的是,尽管上样量降低了50倍,但通过两种技术鉴定出的肽,CZE产生的峰强度均比UPLC强25%。这种高灵敏度反映了CZE中使用的电动泵浦纳米喷雾界面产生的高效电离。该报告是CZE-MS / MS与UPLC-MS / MS在大规模真核蛋白质组学分析中的首次比较。 CZE-ESI-MS / MS产生的蛋白质和肽鉴定数量接近UPLC-MS / MS产生的蛋白质和多肽鉴定数量,但样品量降低了近两个数量级。

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