Gonzalez J, Besada V, Garay H, Reyes O, Padron G, Tambara Y, Takao T, Shimonishi Y
Center for Genetic Engineering and Biotechnology, Havana, Cuba.
J Mass Spectrom. 1996 Feb;31(2):150-8. doi: 10.1002/(SICI)1096-9888(199602)31:2<150::AID-JMS287>3.0.CO;2-5.
Internal rearrangement involving the loss of the C-terminal amino acid residue upon collision-induced dissociation (CID) or metastable decomposition was studied for protonated peptides. To investigate the structural characteristics of peptides responsible for this rearrangement, a series of synthetic peptides were prepared and subjected to B/E-linked scan or tandem mass spectrometric analyses using a four-sector instrument. The results showed that the position of a basic amino acid in the peptide sequence and its basicity have a significant influence on the rearrangement. Arginine (Arg) located at the n-1 position facilitates the rearrangement with about twice as many rearrangement ions as is observed for the other Arg-containing peptides. This can be attributed to the interaction of a positively charged guanidino group of Arg with its own carbonyl group via a salt bridge which is tightly formed in vacuo between a guanidino and carboxylate groups, the mechanism of which is analogous to that previously proposed for the formation of similar rearrangement ions observed in the spectra of metal-cationized peptides. This association would result in the facile attack of the C-terminal hydroxyl group on the penultimate carbonyl group, leading to the rearrangement. In addition, the rearrangement ion was observed both in metastable decomposition and high-energy CID spectra obtained by B/E-linked scan analyses without or with gas, respectively, but in a sequence dependent manner.
研究了质子化肽在碰撞诱导解离(CID)或亚稳分解时涉及C端氨基酸残基丢失的内部重排。为了研究导致这种重排的肽的结构特征,制备了一系列合成肽,并使用四扇区仪器进行B/E联动扫描或串联质谱分析。结果表明,肽序列中碱性氨基酸的位置及其碱性对重排有显著影响。位于n-1位置的精氨酸(Arg)促进重排,其重排离子数量约为其他含Arg肽的两倍。这可归因于Arg带正电的胍基与其自身羰基通过盐桥相互作用,该盐桥在真空中胍基和羧酸盐基团之间紧密形成,其机制类似于先前提出的在金属阳离子化肽光谱中观察到的类似重排离子的形成机制。这种缔合将导致C端羟基对倒数第二个羰基的容易攻击,从而导致重排。此外,分别在无气体或有气体的情况下通过B/E联动扫描分析获得的亚稳分解和高能CID光谱中均观察到重排离子,但呈序列依赖性。