Laskin Julia, Yang Zhibo, Lam Corey, Chu Ivan K
Fundamental Sciences Division, Pacific Northwest National Laboratory, Richland, WA 99352, USA.
Anal Chem. 2007 Sep 1;79(17):6607-14. doi: 10.1021/ac070777b. Epub 2007 Aug 4.
Comparison between the gas-phase fragmentation of odd-electron M+, [M + H]2+, and [M - 2H]-* ions of model peptides suggests that charge-remote radical-driven fragmentation pathways play an important role in the dissociation of odd-electron peptide ions. We have found that charge-remote processes are responsible for a variety of side-chain losses from the precursor ion and some backbone fragmentation. These fragmentation pathways most likely involve hydrogen abstraction by the radical site that initiates subsequent cleavages. These findings are generally relevant to our understanding of the fragmentation patterns of odd-electron peptide ions produced through various approaches including the capture of low-energy electrons, electron detachment, and electron transfer.
对模型肽的奇电子M+*、[M + H]2+*和[M - 2H]-*离子的气相碎裂进行比较表明,电荷远程自由基驱动的碎裂途径在奇电子肽离子的解离中起重要作用。我们发现电荷远程过程导致了前体离子的多种侧链损失和一些主链碎裂。这些碎裂途径很可能涉及自由基位点夺取氢,从而引发后续裂解。这些发现通常有助于我们理解通过各种方法产生的奇电子肽离子的碎裂模式,这些方法包括捕获低能电子、电子脱离和电子转移。