首页> 外文期刊>Journal of proteome research >On-Line LC-MS Approach Combining Collision-Induced Dissociation(CID),Electron-Transfer Dissociation(ETD),and CID of an Isolated Charge-Reduced Species for the Trace-Level Characterization of Proteins with Post-Translational Modifications
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On-Line LC-MS Approach Combining Collision-Induced Dissociation(CID),Electron-Transfer Dissociation(ETD),and CID of an Isolated Charge-Reduced Species for the Trace-Level Characterization of Proteins with Post-Translational Modifications

机译:在线LC-MS方法结合碰撞诱导解离(CID),电子转移解离(ETD)和离体电荷减少物种的CID,用于翻译后修饰的蛋白质痕量表征

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摘要

We have expanded our recent on-line LC-MS platform for large peptide analysis to combine collision-induced dissociation(CID),electron-transfer dissociation(ETD),and CID of an isolated charge-reduced(CRCID)species derived from ETD to determine sites of phosphorylation and glycosylation modifications,as well as the sequence of large peptide fragments(i.e.,2000-10 000 Da)from complex proteins,such as beta-casein,epidermal growth factor receptor(EGFR),and tissue plasminogen activator(t-PA)at the low femtomol level.The incorporation of an additional CID activation step for a charge-reduced species,isolated from ETD fragment ions,improved ETD fragmentation when precursor ions with high m/z(approximately>1000)were automatically selected for fragmentation.Specifically,the identification of the exact phosphorylation sites was strengthened by the extensive coverage of the peptide sequence with a near-continuous product ion series.The identification of N-linked glycosylation sites in EGFR and an O-linked glycosylation site in t-PA were also improved through the enhanced identification of the peptide backbone sequence of the glycosylated precursors.The new strategy is a good starting survey scan to characterize enzymatic peptide mixtures over a broad range of masses using LC-MS with data-dependent acquisition,as the three activation steps can provide complementary information to each other.In general,large peptides can be extensively characterized by the ETD and CRCID steps,including sites of modification from the generated,near-continuous product ion series,supplemented by the CID-MS2 step.At the same time,small peptides(e.g.,<2+ions),which lack extensive ETD or CRCID fragmentation,can be characterized by the CID-MS2 step.A more targeted approach can then be followed in subsequent LC-MS runs to obtain additional information,if needed.Overall,the recently introduced ETD not only provides useful structural information,but also enhances the confidence of all assignments.The sensitivity of this new approach on the chromatographic time scale is similar to the previous Extended Range Proteomic Analysis(ERPA)using CID-MS2 and CID-MS3.The new LC-MS platform can be anticipated to be a useful approach for the comprehensive characterization of complex proteins.
机译:我们已经扩展了用于大肽分析的最新在线LC-MS平台,以将碰撞诱导解离(CID),电子转移解离(ETD)和源自ETD的分离的减少电荷的(CRCID)物种的CID结合到确定复杂蛋白(例如β-酪蛋白,表皮生长因子受体(EGFR)和组织纤溶酶原激活物(t)的磷酸化和糖基化修饰位点,以及大肽片段(即2000-10 000 Da)的序列(PA)处于低飞摩尔水平具体地说,通过用近连续的产物离子序列广泛覆盖肽序列,可以加强对确切磷酸化位点的鉴定。通过增强糖基化前体的肽主链序列的鉴定,还改善了t-PA中的O-连接糖基化位点。新策略是一个很好的起点调查扫描,可使用LC-MS表征广泛质量范围内的酶促肽混合物通过数据获取,三个激活步骤可以互相提供补充信息。通常,大肽可以通过ETD和CRCID步骤进行广泛表征,包括从生成的,近连续的产物离子序列中修饰的位点,同时,还可以通过CID-MS2步骤来表征缺少大量ETD或CRCID片段的小肽段(例如,<2+离子)。然后可以采用更具针对性的方法总的来说,最近引入的ETD不仅提供了有用的结构信息,而且还增强了所有任务的信心。这种新方法在色谱时间尺度上的有效性与之前使用CID-MS2和CID-MS3的扩展范围蛋白质组学分析(ERPA)相似。新的LC-MS平台有望成为一种有用的方法,可以对CID-MS2进行全面表征复杂的蛋白质。

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