Laboratoire de Chimie Physique Moléculaire, École Polytechnique Fédérale de Lausanne, CH-1015, Lausanne, Switzerland.
J Am Soc Mass Spectrom. 2012 Jul;23(7):1173-81. doi: 10.1007/s13361-012-0384-0. Epub 2012 Apr 18.
We employ cold ion spectroscopy (CIS) in conjunction with high-field asymmetric waveform ion mobility spectrometry (FAIMS) to study the peptide bradykinin in its doubly protonated charge state (bk + 2 H). Using FAIMS, we partially separate the electrosprayed bk + 2 H ions into two conformational families and selectively introduce one of them at a time into a cold ion trap mass spectrometer, where we probe them by UV photofragment spectroscopy. Although the two conformational families have distinct electronic spectra, some cross-conformer contamination can be observed under certain conditions. We demonstrate that this contamination comes from isomerization of ions energized during and/or after their separation and not from incomplete separation of the initially electrosprayed conformations in the FAIMS stage. By varying the injection voltage of the ions into our mass spectrometer, we can intentionally induce isomerization to produce what seems to be a gas phase equilibrium distribution of conformers. This distribution is different from the one produced initially by electrospray, indicating that some of the conformers are kinetically trapped and may be related to conformers that are more favored in solution.
我们采用冷离子光谱(CIS)结合高场非对称波形离子淌度谱(FAIMS)研究双质子化荷质比为 bk + 2H 的多肽缓激肽。利用 FAIMS,我们将电喷雾的 bk + 2H 离子部分分离成两种构象家族,并选择性地将其中一种依次引入冷离子阱质谱仪中,在那里我们通过紫外光解碎片光谱对它们进行探测。尽管这两种构象家族具有不同的电子光谱,但在某些条件下可以观察到一些交叉构象的污染。我们证明这种污染来自于在分离过程中和/或之后被加速的离子的异构化,而不是来自于 FAIMS 阶段中最初电喷雾的构象的不完全分离。通过改变离子注入到我们质谱仪的电压,我们可以有意诱导异构化以产生似乎是气相构象平衡分布的物质。这种分布与最初通过电喷雾产生的分布不同,表明一些构象被动力学捕获,可能与在溶液中更有利的构象有关。