O'Connor Peter B, Lin Cheng, Cournoyer Jason J, Pittman Jason L, Belyayev Marina, Budnik Bogdan A
Mass Spectrometry Resource, Department of Biochemistry, Boston University School of Medicine, 670 Albany St., Rm. 507, 02118, Boston, MA, USA.
J Am Soc Mass Spectrom. 2006 Apr;17(4):576-585. doi: 10.1016/j.jasms.2005.12.015. Epub 2006 Feb 28.
To explore the mechanism of electron capture dissociation (ECD) of linear peptides, a set of 16-mer peptides were synthesized with deuterium labeled on the alpha-carbon position of four glycines. The ECD spectra of these peptides showed that such peptides exhibit a preference for the radical to migrate to the alpha-carbon position on glycine via hydrogen (or deuterium) abstraction before the final cleavage and generation of the detected product ions. The data show c-type fragment ions, ions corresponding to the radical cation of the c-type fragments, c*, and they also show c*-1 peaks in the deuterated peptides only. The presence of the c*-1 peaks is best explained by radical-mediated scrambling of the deuterium atoms in the long-lived, metastable, radical intermediate complex formed by initial electron capture, followed by dissociation of the complex. These data suggest the presence of at least two mechanisms, one slow, one fast. The abundance of H* and -CO losses from the precursor ion changed upon deuterium labeling indicating the presence of a kinetic isotope effect, which suggests that the values reported here represent an underestimation of radical migration and H/D scrambling in the observed fragments.
为探究线性肽的电子捕获解离(ECD)机制,合成了一组16聚体肽,其中四个甘氨酸的α-碳位置标记有氘。这些肽的ECD光谱表明,此类肽在最终裂解并生成检测到的产物离子之前,自由基倾向于通过氢(或氘)提取迁移至甘氨酸的α-碳位置。数据显示了c型碎片离子、对应于c型碎片自由基阳离子的离子c*,并且仅在氘代肽中显示出c*-1峰。c*-1峰的存在最好通过在初始电子捕获形成的长寿命、亚稳态自由基中间体复合物中,由自由基介导的氘原子重排来解释,随后复合物发生解离。这些数据表明至少存在两种机制,一种慢,一种快。氘标记后,前体离子的H*和-CO损失丰度发生变化,表明存在动力学同位素效应,这表明此处报道的值低估了观察到的碎片中的自由基迁移和H/D重排。