Forbes Matthew W, Jockusch Rebecca A, Young Alex B, Harrison Alex G
Department of Chemistry, University of Toronto, Toronto, Ontario, Canada.
J Am Soc Mass Spectrom. 2007 Nov;18(11):1959-66. doi: 10.1016/j.jasms.2007.08.003. Epub 2007 Aug 14.
The fragmentation reactions of the protonated dipeptides Gly-Arg and Arg-Gly have been studied using collision-induced dissociation (CID) in a quadrupole ion trap, by in-source CID in a single-quadrupole mass spectrometer and by CID in the quadrupole cell of a QqTOF mass spectrometer. In agreement with earlier quadrupole ion trap studies (Farrugia, J. M.; O'Hair, R. A. J., Int. J. Mass Spectrom., 2003, 222, 229), the CID mass spectra obtained with the ion trap for the MH(+) ions and major fragment ions are very similar for the two isomers indicating rearrangement to a common structure before fragmentation. In contrast, in-source CID of the MH(+) ions and QqTOF CID of the MH(+), MH - NH(3) and MH <23 HN = C(NH(2))(2) ions provide distinctly different spectra for the isomeric dipeptides, indicating that rearrangement to a common structure has not occurred to a significant extent under these conditions even near the threshold for fragmentation in the QqTOF instrument. Clearly, under normal operating conditions significantly different fragmentation behavior is observed in the ion trap and beam-type experiments. This different behavior probably can be attributed to the shorter observation times and concomitant higher excitation energies in the in-source and QqTOF experiments compared to the long observation times and lower excitation energies relevant to the ion trap experiments. Based largely on elemental compositions derived from accurate mass measurements in QqTOF studies fragmentation schemes are proposed for the MH(+), MH - NH(3), and MH - (HN = C(NH(2))(2)) ions.
利用四极杆离子阱中的碰撞诱导解离(CID)、单四极杆质谱仪中的源内CID以及QqTOF质谱仪四极杆池中的CID,对质子化二肽甘氨酰 - 精氨酸(Gly-Arg)和精氨酰 - 甘氨酸(Arg-Gly)的碎裂反应进行了研究。与早期的四极杆离子阱研究结果一致(Farrugia, J. M.; O'Hair, R. A. J., 《国际质谱杂志》,2003年,第222卷,第229页),对于这两种异构体,离子阱获得的MH(+)离子和主要碎片离子的CID质谱非常相似,表明在碎裂前重排为共同结构。相比之下,MH(+)离子的源内CID以及MH(+)、MH - NH₃和MH - <23>HN = C(NH₂)₂离子的QqTOF CID为这两种异构二肽提供了明显不同的谱图,表明在这些条件下,即使接近QqTOF仪器的碎裂阈值,也没有发生显著程度的重排为共同结构的情况。显然,在正常操作条件下,在离子阱和束型实验中观察到了明显不同的碎裂行为。这种不同的行为可能归因于与离子阱实验相关的较长观察时间和较低激发能量相比,源内和QqTOF实验中较短的观察时间以及随之而来的较高激发能量。基于QqTOF研究中精确质量测量得出的元素组成,主要为MH(+)、MH - NH₃和MH - (HN = C(NH₂)₂)离子提出了碎裂方案。