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优化片段化可提高通过 MS 可切割试剂交联的肽的鉴定。

Optimized Fragmentation Improves the Identification of Peptides Cross-Linked by MS-Cleavable Reagents.

机构信息

Institute of Molecular Pathology (IMP) , Vienna BioCenter (VBC) , Vienna 1030 , Austria.

Institute of Molecular Biotechnology (IMBA), Austrian Academy of Sciences , Vienna BioCenter (VBC) , Vienna 1030 , Austria.

出版信息

J Proteome Res. 2019 Mar 1;18(3):1363-1370. doi: 10.1021/acs.jproteome.8b00947. Epub 2019 Feb 18.

Abstract

Cross-linking mass spectrometry is becoming increasingly popular, and current advances are widening the applicability of the technique so that it can be utilized by nonspecialist laboratories. Specifically, the use of novel mass-spectrometry-cleavable (MS-cleavable) reagents dramatically reduces the complexity of the data by providing (i) characteristic reporter ions and (ii) the mass of the individual peptides rather than that of the cross-linked moiety. However, optimum acquisition strategies to obtain the best-quality data for such cross-linkers with higher energy C-trap dissociation (HCD) alone are yet to be achieved. Therefore, we have carefully investigated and optimized MS parameters to facilitate the identification of disuccinimidyl-sulfoxide-based cross-links on HCD-equipped mass spectrometers. From the comparison of nine different fragmentation energies, we chose several stepped-HCD fragmentation methods that were evaluated on a variety of cross-linked proteins. The optimal stepped-HCD method was then directly compared with previously described methods using an Orbitrap Fusion Lumos Tribrid instrument using a high-complexity sample. The final results indicate that our stepped-HCD method is able to identify more cross-links than other methods, mitigating the need for multistage MS-enabled (MS) instrumentation and alternative dissociation techniques. Data are available via ProteomeXchange with identifier PXD011861.

摘要

交联质谱分析技术越来越受到关注,目前的技术进步拓宽了该技术的适用性,使得非专业实验室也能够使用该技术。具体来说,新型的质谱可裂解(MS-cleavable)试剂的使用通过提供(i)特征报告离子和(ii)单个肽的质量而不是交联部分的质量,极大地降低了数据的复杂性。然而,对于具有更高能量 C 阱解离(HCD)的交联剂,仍然需要优化采集策略以获得最佳质量的数据。因此,我们仔细研究和优化了 MS 参数,以促进在配备 HCD 的质谱仪上鉴定基于二琥珀酰亚胺基砜的交联。通过比较九种不同的碎裂能量,我们选择了几种分步 HCD 碎裂方法,并在各种交联蛋白上进行了评估。然后,使用高复杂度的样品,在 Orbitrap Fusion Lumos Tribrid 仪器上直接将最佳分步 HCD 方法与之前描述的方法进行比较。最终结果表明,我们的分步 HCD 方法能够鉴定出比其他方法更多的交联,从而减少了对多阶段 MS 仪器和替代解离技术的需求。数据可通过 ProteomeXchange 以标识符 PXD011861 获得。

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