National Centre for Mass Spectrometry, Indian Institute of Chemical Technology, Hyderabad 500 607, India.
Rapid Commun Mass Spectrom. 2011 Jul 30;25(14):1949-58. doi: 10.1002/rcm.5076.
A series of positional isomeric pairs of Fmoc-protected dipeptides, Fmoc-Gly-Xxx-OY/Fmoc-Xxx-Gly-OY (Xxx=Ala, Val, Leu, Phe) and Fmoc-Ala-Xxx-OY/Fmoc-Xxx-Ala-OY (Xxx=Leu, Phe) (Fmoc=[(9-fluorenylmethyl)oxy]carbonyl) and Y=CH(3)/H), have been characterized and differentiated by both positive and negative ion electrospray ionization ion-trap tandem mass spectrometry (ESI-IT-MS(n)). In contrast to the behavior of reported unprotected dipeptide isomers which mainly produce y(1)(+) and/or a(1)(+) ions, the protonated Fmoc-Xxx-Gly-OY, Fmoc-Ala-Xxx-OY and Fmoc-Xxx-Ala-OY yield significant b(1)(+) ions. These ions are formed, presumably with stable protonated aziridinone structures. However, the peptides with Gly- at the N-terminus do not form b(1)(+) ions. The M+H ions of all the peptides undergo a McLafferty-type rearrangement followed by loss of CO(2) to form M+H-Fmoc+H. The MS(3) collision-induced dissociation (CID) of these ions helps distinguish the pairs of isomeric dipeptides studied in this work. Further, negative ion MS(3) CID has also been found to be useful for differentiating these isomeric peptide acids. The MS(3) of M-H-Fmoc+H of isomeric peptide acids produce c(1)(-), z(1)(-) and y(1)(-) ions. Thus the present study of Fmoc-protected peptides provides additional information on mass spectral characterization of the dipeptides and distinguishes the positional isomers.
一系列 Fmoc 保护的二肽的位置异构对,Fmoc-Gly-Xxx-OY/Fmoc-Xxx-Gly-OY(Xxx=Ala、Val、Leu、Phe)和 Fmoc-Ala-Xxx-OY/Fmoc-Xxx-Ala-OY(Xxx=Leu、Phe)(Fmoc=[(9-芴基甲氧基)羰基])和 Y=CH(3)/H),已通过正离子和负离子电喷雾电离离子阱串联质谱(ESI-IT-MS(n))进行了表征和区分。与报道的未保护二肽异构体的行为形成对比,这些异构体主要产生 y(1)(+) 和/或 a(1)(+) 离子,而质子化的 Fmoc-Xxx-Gly-OY、Fmoc-Ala-Xxx-OY 和 Fmoc-Xxx-Ala-OY 产生显著的 b(1)(+) 离子。这些离子可能是形成稳定的质子化氮丙啶酮结构。然而,在 N 端具有 Gly-的肽不形成 b(1)(+) 离子。所有肽的M+H 离子经历 McLafferty 型重排,然后失去 CO(2) 形成M+H-Fmoc+H。这些离子的 MS(3)碰撞诱导解离(CID)有助于区分本研究中研究的二肽对异构。此外,负离子 MS(3)CID 也已被发现可用于区分这些异构肽酸。异构肽酸的M-H-Fmoc+H的 MS(3)产生 c(1)(-)、z(1)(-) 和 y(1)(-) 离子。因此,本研究中的 Fmoc 保护肽提供了关于二肽的质谱特征化的附加信息,并区分了位置异构体。