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Adapting Data-Independent Acquisition for Mass Spectrometry Based Protein Site-Specific N-Glycosylation Analysis

机译:适应基于质谱的蛋白质位点特异性N-糖基化分析的数据无关地获取

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摘要

A hallmark of protein N-glycosylation is extensive heterogeneity associated with each glycosylation site. In human cells, the constituent glycoforms differ mostly in numerous ways of extensions from an invariable trimannosyl core and terminal modifications. The efficient identification of these glycoforms at the glycopeptide level by mass spectrometry (MS) requires a precursor sampling technique that is not dictated by signal intensity or by preset targets during MS2 data acquisition. We show here that the recently developed data-independent acquisition (DIA) approach is best suited to this demanding task. It allows postacquisition extraction of glycopeptide-specific fragment-ion chromatograms to be aligned with that of precursor MS1 ion by nanoLC elution time. For any target glycoprotein, judicious selection of the most favorable MS1/MS2 transitions can first be determined from prior analysis of a purified surrogate standard that carries similar site-specific glycosylation but may differ in its exact range of glycoforms. Since the MS2 transitions to be used for extracting DIA data is common to that glycosylation site and not dictated by a specific MS1 value, our workflow applies equally well to the identification of both targeted and unexpected glycoforms. Using a case example, we show that, in targeted mode, it identified more site-specific glycoforms than the more commonly used data-dependent acquisition method when the amount of the target glycoprotein was limited in a sample of high complexity. In discovery mode, it allows detection, with supporting MS2 evidence, of under-sampled glycoforms and of those that failed to be identified by searching against a predefined glycan library owing to unanticipated modifications.
机译:蛋白质N-糖基化的标志是与每个糖基化位点相关的广泛的异质性。在人体细胞中,组分糖型主要以来自不变的粉末核心和末端修饰的许多延伸方式不同。通过质谱法(MS)在糖肽水平上有效鉴定糖肽水平(MS)需要一种前体采样技术,该技术不通过信号强度或通过预设的目标在MS2数据采集期间决定。我们在这里展示最近开发的数据独立的采集(Dia)方法最适合这种苛刻的任务。它允许通过纳米洗脱时间与前体MS1离子对准的糖肽特异性片段离子色谱图。对于任何靶糖蛋白,可以首先从提前分析纯化的特异性糖基化的纯化的替代标准的先前分析中确定最有利的MS1 / MS2过渡的明智选择,但在其精确范围的甘油膜中可能不同。由于用于提取DIA数据的MS2转换对于该糖基化位点是常见的,因此我们的工作流程同样适用于靶向和意外的糖族的鉴定。使用案例示例,我们表明,当靶糖蛋白的量限制在高复杂性样品中时,它鉴定了比更常用的数据依赖性采集方法更常用的特异性糖综合。在发现模式下,它允许检测,支持US2证据,其被取样的糖综合体以及由于未填充的修改而无法通过针对预定义的Glycan库进行搜索而无法识别的那些。

著录项

  • 来源
    《Analytical chemistry》 |2017年第8期|共8页
  • 作者单位

    Max Plank Inst Biophys Chem Bioanalyt Mass Spectrometry Grp D-37077 Gottingen Germany;

    Acad Sinica Genom Res Ctr Taipei 11529 Taiwan;

    Max Plank Inst Biophys Chem Bioanalyt Mass Spectrometry Grp D-37077 Gottingen Germany;

    Acad Sinica Inst Biol Chem Taipei 11529 Taiwan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

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