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Expanding the Depth and Sensitivity of Cross-Link Identification by Differential Ion Mobility Using High-Field Asymmetric Waveform Ion Mobility Spectrometry

机译:使用高场不对称波形离子迁移光谱法通过差分离子移动扩展交联识别的深度和灵敏度

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摘要

In cross-linking mass spectrometry (XL-MS), the depth and sensitivity of cross-link detection is often limited by the low abundance of cross-links compared to non-cross-linked peptides in the digestion mixture. To improve the identification efficiency of cross-links, here, we present a gas-phase separation strategy using high-field asymmetric waveform ion mobility spectrometry (FAIMS) coupled to the Orbitrap Tribrid mass spectrometers. By enabling an additional peptide separation step in the gas phase using the FAIMS device, we increase the number of cross-link identifications by 22% for a medium complex sample and 59% for strong cation exchange-fractionated HEK293T cell lysate in XL-MS experiments using disuccinimidyl sulfoxide (DSSO) cross-linker. When disuccinimidyl suberate (DSS) cross-linker is in use, we are able to boost cross-link identification by 89% for the medium and 100% for the high complex sample compared to the analyses without FAIMS. Furthermore, we show that, for medium complex samples, FAIMS enables the collection of single-shot XL-MS data with a comparable depth to the corresponding sample fractionated by chromatography-based approaches. Altogether, we demonstrate FAIMS is highly beneficial for XL-MS studies by expanding the proteome coverage of cross-links while improving the efficiency and confidence of cross-link identification.
机译:在交联质谱(XL-MS)中,交联检测的深度和灵敏度通常受到与消化混合物中的非交联肽相比的低丰度的较低的交联。为了提高交联的识别效率,这里,我们使用与斜拉瓣三架质谱仪耦合的高场非对称波形离子迁移率(Faims)呈现气相分离策略。通过使用FAIMS装置在气相中的额外肽分离步骤,通过在XL-MS实验中将培养基复合样品增加22%的交联鉴定的数量和59%,在XL-MS实验中为强阳离子交换分级的HEK293T细胞裂解物使用硫氧化亚砜(DSSO)交联剂。在使用高氨基氨基乙烯酯(DSS)交联剂时,我们能够将培养基和100%促进89%的交叉链接鉴定,并且与没有FAIMS的分析相比,高复杂样品的100%。此外,我们表明,对于中等复杂样本,Faims使得能够将单次XL-MS数据集收集到通过基于色谱的方法分馏的相应样品的可比深度。完全,我们展示了Faims对XL-MS研究非常有利于通过扩大交联的蛋白质组覆盖,同时提高交联识别的效率和置信度。

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  • 来源
    《Analytical chemistry》 |2020年第15期|共9页
  • 作者单位

    Leibniz Forschungsinst Mol Pharmakol FMP Dept Chem Biol D-13125 Berlin Germany;

    Leibniz Forschungsinst Mol Pharmakol FMP Dept Chem Biol D-13125 Berlin Germany;

    Leibniz Forschungsinst Mol Pharmakol FMP Dept Chem Biol D-13125 Berlin Germany;

    Max Planck Unit Sci Pathogens D-10117 Berlin Germany;

    Thermo Fisher Sci San Jose CA 95134 USA;

    Leibniz Forschungsinst Mol Pharmakol FMP Dept Chem Biol D-13125 Berlin Germany;

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