Liang Xiaorong, Xia Yu, McLuckey Scott A
Department of Chemistry, Purdue University, West Lafayette, Indiana 47907-2084, USA.
Anal Chem. 2006 May 1;78(9):3208-12. doi: 10.1021/ac052288m.
The alternate operation of nanoelectrospray ionization and atmospheric pressure chemical ionization, using a common atmosphere/vacuum interface and ion path, has been implemented to facilitate ion/ion reaction experiments in a linear ion trap-based tandem mass spectrometer. The ion sources are operated in opposite polarity modes whereby one of the ion sources is used to form analyte ions while the other is used to form reagent ions of opposite polarity. This combination of ion sources is well-suited to implementation of experiments involving multiply charged ions in reaction with singly charged ions of opposite polarity. Three analytically useful ion/ion reaction types are illustrated: the partial deprotonation of a multiply protonated protein, the partial protonation of a multiply deprotonated oligonucleotide, and electron transfer to a multiply protonated peptide. The approach described herein is attractive in that it enables both single proton-transfer and single electron-transfer ion/ion reaction experiments to be implemented without requiring major modifications to the tandem mass spectrometer hardware. Furthermore, a wide range of reactant ions can be formed with these ionization methods and the pulsed nature of operation appears to lead to no significant compromise in the performance of either ion source.
利用一个通用的常压/真空接口和离子路径,实现了纳米电喷雾电离和大气压化学电离的交替操作,以促进基于线性离子阱的串联质谱仪中的离子/离子反应实验。离子源以相反的极性模式运行,其中一个离子源用于形成分析物离子,而另一个用于形成相反极性的试剂离子。这种离子源组合非常适合实施涉及多电荷离子与相反极性单电荷离子反应的实验。展示了三种具有分析用途的离子/离子反应类型:多质子化蛋白质的部分去质子化、多去质子化寡核苷酸的部分质子化以及向多质子化肽的电子转移。本文所述方法具有吸引力,因为它能够在无需对串联质谱仪硬件进行重大修改的情况下,实施单质子转移和单电子转移离子/离子反应实验。此外,通过这些电离方法可以形成多种反应物离子,并且操作的脉冲性质似乎不会对任何一个离子源的性能造成显著影响。