Han Hongling, Londry Frank A, Erickson David E, McLuckey Scott A
Department of Chemistry, Purdue University, West Lafayette, IN 47907-2084, USA.
Analyst. 2009 Apr;134(4):681-9. doi: 10.1039/b821348h. Epub 2009 Feb 11.
Broadband resonance excitation via a tailored waveform in a high pressure collision cell (Q2) on a hybrid quadrupole/time-of-flight (QqTOF) tandem mass spectrometer has been implemented for cation transmission mode electron transfer ion/ion reactions of tryptic polypeptides. The frequency components in the broadband waveform were defined to excite the first generation intact electron transfer products for relatively large tryptic peptides. The optimum amplitude of the arbitrary waveform applied has been determined empirically to be 3.0 V(p-p), which is effective for relatively high mass-to-charge (m/z) ratio precursor ions with little elimination of sequence information for low m/z ions. The application of broadband activation during the transmission mode ion/ion reaction obviates frequency and amplitude tuning normally associated with ion trap collision induced dissociation (CID). This approach has been demonstrated with triply and doubly charged tryptic peptides with and without post-translational modifications. Enhanced structural information was achieved by production of a larger number of informative c- and z-type fragments using the tailored waveform on unmodified and modified (phosphorylated and glycosylated) peptides when the first generation intact electron transfer products fell into the defined frequency range. This approach can be applied to a wide range of tryptic peptide ions, making it attractive as a rapid and general approach for ETD LC-MS/MS of tryptic peptides in a QqTOF instrument.
在混合四极杆/飞行时间(QqTOF)串联质谱仪的高压碰撞池(Q2)中,通过定制波形实现宽带共振激发,已应用于胰蛋白酶多肽的阳离子传输模式电子转移离子/离子反应。宽带波形中的频率成分被定义为激发相对较大的胰蛋白酶肽的第一代完整电子转移产物。通过实验确定所施加的任意波形的最佳幅度为3.0 V(峰-峰值),这对于相对高质量电荷比(m/z)的前体离子有效,同时对低m/z离子的序列信息消除较少。在传输模式离子/离子反应期间应用宽带激活避免了通常与离子阱碰撞诱导解离(CID)相关的频率和幅度调谐。这种方法已在有和没有翻译后修饰的三电荷和双电荷胰蛋白酶肽上得到验证。当第一代完整电子转移产物落入定义的频率范围时,通过在未修饰和修饰(磷酸化和糖基化)的肽上使用定制波形产生大量信息丰富的c型和z型片段,获得了增强的结构信息。这种方法可以应用于广泛的胰蛋白酶肽离子,使其成为QqTOF仪器中胰蛋白酶肽ETD LC-MS/MS的一种快速通用方法。