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Enhanced in-Source Fragmentation Annotation Enables Novel Data Independent Acquisition and Autonomous METLIN Molecular Identification

机译:增强的源碎片注释能够启用新的数据独立获取和自主式梅林分子识别

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摘要

Electrospray ionization (ESI) in-source fragmentation (ISF) has traditionally been minimized to promote precursor molecular ion formation, and therefore its value in molecular identification is underappreciated. In-source annotation algorithms have been shown to increase confidence in putative identifications by using ubiquitous in-source fragments. However, these in-source annotation algorithms are limited by ESI sources that are generally designed to minimize ISF. In this study, enhanced in-source fragmentation annotation (eISA) was created by tuning the ISF conditions to generate in-source fragmentation patterns comparable with higher energy fragments generated at higher collision energies as deposited in the METLIN MS/MS library, without compromising the intensity of precursor ions (median loss <= 10% in both positive and negative ionization modes). The analysis of 50 molecules was used to validate the approach in comparison to MS/MS spectra produced via data dependent acquisition (DDA) and data independent acquisition (DIA) mode with quadrupole time-of-flight mass spectrometry (QTOF-MS). Enhanced ISF as compared to QTOF DDA enabled higher peak intensities for the precursor ions (median: 18 times in negative mode and 210 times in positive mode), with the eISA fragmentation patterns consistent with METLIN for over 90% of the molecules with respect to fragment relative intensity and m/z. eISA also provides higher peak intensity as opposed to QTOF DIA for over 60% of the precursor ions in negative mode (median increase: 20%) and for 88% of the precursor ions in positive mode (median increase: 80%). Molecular identification with eISA was also successfully validated from the analysis of a metabolic extract from macrophages. An interesting side benefit of enhanced ISF is that it significantly improved molecular identification confidence with low resolution single quadrupole mass-spectrometry-based untargeted LC/MS experiments. Overall, enhanced ISF allowed for eISA to be used as a more sensitive alternative to other QTOF DIA and DDA approaches, and further, it enabled the acquisition of ESI TOF and ESI single quadrupole mass spectrometry instrumentation spectra with improved molecular identification confidence.
机译:电喷雾电离(ESI)传统上源碎片(ISF)传统上被最小化以促进前体分子离子形成,因此其分子鉴定的价值被低估。已经证明了源源的注释算法通过使用普遍存在的源片段碎片来增加对推定标识的置信度。然而,这些中源注释算法受ESI源的限制,通常设计成最小化ISF。在该研究中,通过调整ISF条件来产生增强的源片段碎片注释(EISA),以产生与沉积在Metin MS / MS库中的较高碰撞能量的较高碰撞能量的较高能量片段相当的源片段的源片段,而不会损害前体离子强度(正极电离模式中的中值损耗<= 10%)。与通过数据相关的采集(DDA)和数据独立获取(DIA)模式产生的MS / MS光谱相比,使用50个分子的分析来验证方法,以及具有四极针对飞行时间质谱(QTOF-MS)的数据独立获取(DIA)模式。与QTOF DDA相比,增强的ISF使得前体离子的较高峰强度(中位数:18次和正模式下的210次),与梅林相一致的EISA片段化图案相对于片段相对于碎片超过90%的分子相对强度和m / z。 EISA还提供较高的峰强度,而不是QTOF DIA,以阳性模式(中值增加:20%)和88%的前体离子(中位数增加:80%)的60%超过60%的前体离子。从巨噬细胞的代谢提取物的分析中也成功地验证了与EISA的分子鉴定。增强的ISF的有趣侧面益处是它显着提高了基于低分辨率单Quadrupole质谱的未确定LC / MS实验的分子鉴定置信度。总体而言,增强的ISF允许EISA用作其他QTOF DIA和DDA方法的更敏感的替代品,并进一步使得能够采集ESI TOF和ESI单QuadRupole质谱仪表光谱,改善分子识别信心。

著录项

  • 来源
    《Analytical chemistry》 |2020年第8期|共9页
  • 作者单位

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

    EURECAT Technol Ctr Catalonia &

    Rovira &

    Virgili Ctr Omic Sci Reus Catalonia Spain;

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

    Novartis Res Fdn Metab &

    Pharmacokinet Discovery Chem Genom Inst San Diego CA 92121 USA;

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

    Scripps Res Inst Scripps Ctr Metabol La Jolla CA 92037 USA;

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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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