Pitteri Sharon J, Chrisman Paul A, Hogan Jason M, McLuckey Scott A
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, USA.
Anal Chem. 2005 Mar 15;77(6):1831-9. doi: 10.1021/ac0483872.
Ion-ion reactions between a variety of peptide cations (doubly and triply charged) and SO2 anions have been studied in a 3-D quadrupole ion trap, resulting in proton and electron transfer. Electron transfer dissociation (ETD) gives many c- and z-type fragments, resulting in extensive sequence coverage in the case of triply protonated peptides with SO2*-. For triply charged neurotensin, in which a direct comparison can be made between 3-D and linear ion trap results, abundances of ETD fragments relative to one another appear to be similar. Reactions of doubly protonated peptides with SO2*- give much less structural information from ETD than triply protonated peptides. Collision-induced dissociation (CID) of singly charged ions formed in reactions with SO2*- shows a combination of proton and electron transfer products. CID of the singly charged species gives more structural information than ETD of the doubly protonated peptide, but not as much information as ETD of the triply protonated peptide.
在三维四极杆离子阱中研究了多种肽阳离子(双电荷和三电荷)与SO₂阴离子之间的离子-离子反应,结果发生了质子和电子转移。电子转移解离(ETD)产生许多c型和z型片段,对于带有SO₂⁻的三质子化肽,能实现广泛的序列覆盖。对于三电荷的神经降压素,在三维离子阱和线性离子阱结果之间可以进行直接比较,ETD片段彼此之间的丰度似乎相似。双质子化肽与SO₂⁻的反应从ETD获得的结构信息比三质子化肽少得多。与SO₂⁻反应形成的单电荷离子的碰撞诱导解离(CID)显示出质子和电子转移产物的组合。单电荷物种的CID比双质子化肽的ETD提供更多的结构信息,但不如三质子化肽的ETD提供的信息多。