Vrkoslav Vladimír, Muck Alexander, Brown Jeffery M, Hubálek Martin, Cvačka Josef
Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Flemingovo nám. 2, Prague 6, 166 10, Czech Republic.
Waters GmbH, Helfmann-Park 10, Eschborn, 65760, Germany.
Rapid Commun Mass Spectrom. 2018 Dec 30;32(24):2099-2105. doi: 10.1002/rcm.8284.
In-source decay (ISD) matrix-assisted laser desorption/ionisation (MALDI) mass spectrometry with a 1,5-diaminonaphthalene (1,5-DAN) matrix is used for the structural characterisation of peptides. However, MALDI spectra are intrinsically complicated by the presence of matrix ions, which interfere with the peptide fragments. This may cause false-positive results or reduced sequence coverage. This paper reports investigations of ISD processes in an intermediate pressure MALDI ion source and a protocol for the removal of interfering ions using ion mobility separation (IMS).
An intermediate pressure MALDI source of a Q-IMS-Q-TOF instrument (Synapt G2) has been employed for the ISD of selected peptides using a 1,5-DAN matrix.
Successful coupling of the MALDI source tuned for ISD experiments using IMS is demonstrated. The IMS made it possible to remove interfering matrix ions effectively from the spectra and thus to increase the confidence of spectral interpretation. Extensive fragment series corresponding to N-C bond cleavages were observed under optimised conditions; on the other hand, weaker series of ions caused by peptide bond cleavages were prevalent for default conditions and/or the α-hydroxycinnamic acid matrix.
Ion mobility has been used for the elimination of matrix ions. The technique has been applied to top-down sequencing of non-tryptic peptides, such as the human palmitoylated analogue of prolactin-releasing peptide used in recent obesity studies, and human and insect antimicrobial peptides.
采用1,5 - 二氨基萘(1,5 - DAN)基质的源内衰变(ISD)基质辅助激光解吸/电离(MALDI)质谱用于肽段的结构表征。然而,MALDI谱图因基质离子的存在而本质上较为复杂,这些基质离子会干扰肽段碎片。这可能导致假阳性结果或序列覆盖率降低。本文报道了在中压MALDI离子源中对ISD过程的研究以及使用离子淌度分离(IMS)去除干扰离子的方案。
使用Q - IMS - Q - TOF仪器(Synapt G2)的中压MALDI源,采用1,5 - DAN基质对选定的肽段进行ISD。
证明了使用IMS对用于ISD实验的MALDI源进行成功耦合。IMS能够有效地从谱图中去除干扰基质离子,从而提高谱图解释的可信度。在优化条件下观察到了与N - C键裂解相对应的广泛碎片系列;另一方面,在默认条件和/或α - 羟基肉桂酸基质下,由肽键裂解引起的较弱离子系列较为普遍。
离子淌度已用于消除基质离子。该技术已应用于非胰蛋白酶解肽段的自上而下测序,如近期肥胖研究中使用的人催乳素释放肽的棕榈酰化类似物,以及人和昆虫的抗菌肽。