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首页> 外文期刊>Analytica chimica acta >Strong cation exchange-reversed phase liquid chromatography-capillary zone electrophoresis-tandem mass spectrometry platform with high peak capacity for deep bottom-up proteomics
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Strong cation exchange-reversed phase liquid chromatography-capillary zone electrophoresis-tandem mass spectrometry platform with high peak capacity for deep bottom-up proteomics

机译:强阳离子交换反相液相色谱 - 毛细管区电泳 - 串联质谱平台,深度自下底蛋白质组学的高峰能力

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Two-dimensional (2D) liquid chromatography (LC)-tandem mass spectrometry (MS/MS) are typically employed for deep bottom-up proteomics, and the state-of-the-art 2D-LC-MS/MS has approached over 8000 protein identifications (IDs) from mammalian cell lines or tissues in 1-3 days of mass spectrometer time. Capillary zone electrophoresis (CZE)-MS/MS has been suggested as an alternative to LC-MS/MS for bottom-up proteomics. CZE-MS/MS and LC-MS/MS are complementary in protein/peptide ID from complex proteome digests because CZE and LC are orthogonal for peptide separation. In addition, the migration time of peptides from CZE-MS can be predicted accurately, which is invaluable for evaluating the confidence of peptide ID from the database search and even guiding the database search. However, the number of protein IDs from complex proteomes using CZE-MS/MS is still much lower than the state of the art using 2D-LC-MS/MS. In this work, for the first time, we established a strong cation exchange (SCX)-reversed phase LC (RPLC)-CZE-MS/MS platform for deep bottom-up proteomics. The platform identified around 8200 protein groups and 65,000 unique peptides from a mouse brain proteome digest in 70 h. The data represents the largest bottom-up proteomics dataset using CZE-MS/MS and provides a valuable resource for further improving the tool for prediction of peptide migration time in CZE. The peak capacity of the orthogonal SCX-RPLC-CZE platform was estimated to be around 7000. SCX-RPLC-CZE-MS/ MS produced comparable numbers of protein and peptide IDs with 2D-LC-MS/MS (8200 vs. 8900 protein groups, 65,000 vs. 70,000 unique peptides) from the mouse brain proteome digest using comparable instrument time. This is the first time that CZE-MS/MS showed its capability to approach comparable performance to the state-of-the-art 2D-LC-MS/MS for deep proteomic sequencing. SCX-RPLC-CZE-MS/MS and 2D-LC-MS/MS showed good complementarity in protein and peptide IDs and combining those two methods improved the number of protein group and unique peptide IDs by nearly 10% and over 40%, respectively, compared with 2D-LC-MS/MS alone. (C) 2018 Elsevier B.V. All rights reserved.
机译:二维(2D)液相色谱法(LC)-Tandem质谱(MS / MS),通常采用深自下而上蛋白质组学,以及所述状态的最先进的2D-LC-MS / MS已经接近超过8000从哺乳动物细胞系或在质谱仪时间1-3天的组织蛋白标识(ID)。毛细管区带电泳(CZE)-MS / MS已被建议作为一种替代LC-MS / MS对自下而上蛋白质组学。 CZE-MS / MS和LC-MS / MS是在从复杂蛋白质组消化物蛋白质/肽ID互补因为CZE和LC是正交的用于肽的分离。另外,从CZE-MS肽的迁移时间可被精确地预测,这是非常宝贵的,用于评估肽ID从数据库搜索的信心和甚至引导数据库搜索。然而,蛋白质ID的从复杂蛋白质组使用CZE-MS的数目/ MS仍比使用2D-LC-MS / MS的现有技术的状态下降。在这项工作中,在第一时间,我们建立了强阳离子交换(SCX)-reversed液相色谱(RPLC)-CZE-MS / MS平台,为深自下而上蛋白质组学。围绕8200个蛋白质组,从小鼠脑蛋白质组65000种独特肽鉴定的平台消化70小时。数据代表使用CZE-MS / MS最大自下而上蛋白质组学数据集,并提供了宝贵的资源用于进一步改善的在CZE肽迁移时间预测的工具。正交SCX-RPLC-CZE平台的峰值容量估计为7000左右SCX-RPLC-CZE-MS / MS产生的蛋白质和肽ID的可比数字与2D-LC-MS / MS(8200与8900蛋白质组,从小鼠脑蛋白质组65000与70000的独特肽)消化使用仪表可比时间。这是第一次,CZE-MS / MS显示其能力接近相当的性能的状态下的最先进的2D-LC-MS / MS对深蛋白质组测序。 SCX-RPLC-CZE-MS / MS和2D-LC-MS / MS显示的蛋白质和肽ID的良好互补性和这两种方法相结合分别由近10%改善的蛋白质组的和独特的肽ID的数量和超过40%, ,与单独的2D-LC-MS / MS进行比较。 (c)2018 Elsevier B.v.保留所有权利。

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