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本文引用的文献

1
Highly dynamic motion of crown ethers along oligolysine peptide chains.冠醚沿着寡聚赖氨酸肽链的高度动态运动。
Nat Chem. 2009 Oct;1(7):573-7. doi: 10.1038/nchem.352. Epub 2009 Aug 30.
2
Metabolic Profiling of Human Blood by High Resolution Ion Mobility Mass Spectrometry (IM-MS).通过高分辨率离子淌度质谱法(IM-MS)对人体血液进行代谢谱分析。
Int J Mass Spectrom. 2010 Dec;298(1-3):78-90. doi: 10.1016/j.ijms.2010.02.007.
3
Biomolecule analysis by ion mobility spectrometry.离子淌度谱分析生物分子。
Annu Rev Anal Chem (Palo Alto Calif). 2008;1:293-327. doi: 10.1146/annurev.anchem.1.031207.113001.
4
Evidence for a quasi-equilibrium distribution of states for bradykinin [M + 3H]3+ ions in the gas phase.气相中缓激肽 [M + 3H]3+ 离子的准平衡态分布的证据。
J Phys Chem B. 2010 Jun 17;114(23):7777-83. doi: 10.1021/jp102478k.
5
Petroleum crude oil characterization by IMS-MS and FTICR MS.利用 IMS-MS 和 FTICR MS 对石油原油进行特征描述。
Anal Chem. 2009 Dec 15;81(24):9941-7. doi: 10.1021/ac901594f.
6
The mass-mobility correlation redux: the conformational landscape of anhydrous biomolecules.质量-迁移率相关性再探讨:无水生物分子的构象景观
J Am Soc Mass Spectrom. 2009 Oct;20(10):1775-81. doi: 10.1016/j.jasms.2009.06.016. Epub 2009 Jul 3.
7
Ion mobility spectrometry/mass spectrometry snapshots for assessing the molecular compositions of complex polymeric systems.用于评估复杂聚合物体系分子组成的离子淌度光谱法/质谱法快照
Anal Chem. 2008 Dec 1;80(23):9073-83. doi: 10.1021/ac801573n.
8
The use of shift reagents in ion mobility-mass spectrometry: studies on the complexation of an active pharmaceutical ingredient with polyethylene glycol excipients.离子淌度-质谱联用中位移试剂的应用:活性药物成分与聚乙二醇辅料络合的研究
J Am Soc Mass Spectrom. 2009 Jan;20(1):1-9. doi: 10.1016/j.jasms.2008.10.002. Epub 2008 Oct 9.
9
Resolving and assigning N-linked glycan structural isomers from ovalbumin by IMS-MS.通过离子淌度质谱法解析并分配卵清蛋白的N-连接聚糖结构异构体
J Am Soc Mass Spectrom. 2008 Nov;19(11):1706-15. doi: 10.1016/j.jasms.2008.07.020. Epub 2008 Jul 31.
10
Profiling of human serum glycans associated with liver cancer and cirrhosis by IMS-MS.通过离子淌度质谱法分析与肝癌和肝硬化相关的人血清聚糖
J Proteome Res. 2008 Mar;7(3):1109-17. doi: 10.1021/pr700702r. Epub 2008 Feb 1.

多维离子淌度质谱分析复杂肽混合物的位移试剂:18-冠-6 醚配合物的评估。

Shift reagents for multidimensional ion mobility spectrometry-mass spectrometry analysis of complex peptide mixtures: evaluation of 18-crown-6 ether complexes.

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47405, USA.

出版信息

Anal Chem. 2011 Jul 1;83(13):5377-85. doi: 10.1021/ac200892r. Epub 2011 Jun 6.

DOI:10.1021/ac200892r
PMID:21609128
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3147282/
Abstract

18-Crown-6 ether (18C6) is evaluated as a shift reagent for multidimensional ion mobility spectrometry-mass spectrometry (IMS-IMS-MS) analyses of tryptic protein digests. In this approach, 18C6 is spiked into the solution-phase mixture and noncovalent peptide-crown ion complexes are formed by electrospraying the mixture into the gas phase. After an initial mobility separation in the first IMS drift region, complexes of similar mobility are selected and dissociated via collisional activation prior to entering the second drift region. These dissociation products (including smaller complexes, naked peptide ions, charge transfer products, and fragment ions) differ in mobility from their precursor ion complexes and (in favorable cases) from one another, allowing the mixture to resolve further in the second IMS region. We estimate an IMS-IMS peak capacity of ~2400 when shift reagents are employed. The approach is illustrated by examining a tryptic digest of cytochrome c and by identifying a peptide out of a complex mixture obtained by digestion of human plasma proteins. Disadvantages arising from increased complexity of data sets as well as other advantages of this approach are considered.

摘要

18-冠-6 醚(18C6)被评估为用于多维离子淌度谱-质谱联用(IMS-IMS-MS)分析胰蛋白酶蛋白水解物的位移试剂。在该方法中,将 18C6 加入溶液相混合物中,并通过将混合物电喷雾到气相中来形成非共价的肽-冠离子配合物。在第一 IMS 漂移区进行初始淌度分离后,选择具有相似淌度的配合物,并在进入第二漂移区之前通过碰撞激活使其解离。这些解离产物(包括较小的配合物、裸露的肽离子、电荷转移产物和片段离子)与它们的前体离子配合物在淌度上不同(在有利的情况下彼此之间也不同),从而允许混合物在第二 IMS 区进一步分离。当使用位移试剂时,我们估计 IMS-IMS 的峰容量约为 2400。该方法通过检查细胞色素 c 的胰蛋白酶消化物和通过鉴定人血浆蛋白消化物获得的复杂混合物中的一种肽来进行说明。考虑了数据集复杂性增加带来的缺点以及该方法的其他优点。