Cabrera Elvin R, Schrader Robert L, Walker Thomas E, Laganowsky Arthur, Russell David H, Clowers Brian H
Department of Chemistry, Washington State University, Pullman, WA 99164, United States.
Department of Chemistry, Texas A&M University, College Station, TX 77843, United States.
Int J Mass Spectrom. 2024 Mar;497. doi: 10.1016/j.ijms.2024.117197. Epub 2024 Jan 9.
Through optimization of terminal frequencies and effective sampling rates, we have developed nonlinear sawtooth-shaped frequency sweeps for efficient Fourier transform ion mobility mass spectrometry (FT-IM-MS) experiments. This is in contrast to conventional FT-IM-MS experiments where ion gates are modulated according to a linear frequency sweep. Linear frequency sweeps are effective but can be hindered by the amount of useful signal obtained using a single sweep over a large frequency range imposed by ion gating inefficiencies, particularly small ion packets, and gate depletion. These negative factors are direct consequences of the inherently low gate pulse widths of high-frequency ion gating events, placing an upper bound on FT-IM-MS performance. Here, we report alternative ion modulation strategies. Sawtooth frequency sweeps may be constructed for the purpose of either extending high-SNR transients or conducting efficient signal-averaging experiments for low-SNR transients. The data obtained using this approach show high-SNR signals for a set of low-mass tetraalkylammonium salts (<1000 m/z) where resolving powers in excess of 500 are achieved. Data for low-SNR obtained for multimeric protein complexes streptavidin (53 kDa) and GroEL (800 kDa) also reveal large increases in the signal-to-noise ratio for reconstructed arrival time distributions.
通过优化终端频率和有效采样率,我们开发了非线性锯齿形频率扫描,用于高效傅里叶变换离子迁移谱质谱(FT-IM-MS)实验。这与传统的FT-IM-MS实验不同,在传统实验中,离子门是根据线性频率扫描进行调制的。线性频率扫描是有效的,但可能会受到以下因素的阻碍:在由离子门控效率低下(特别是小离子包和门耗尽)所施加的大频率范围内使用单次扫描获得的有用信号量。这些负面因素是高频离子门控事件固有的低门脉冲宽度的直接后果,这给FT-IM-MS性能设定了上限。在此,我们报告了替代的离子调制策略。锯齿形频率扫描可用于扩展高信噪比瞬态或对低信噪比瞬态进行高效信号平均实验。使用这种方法获得的数据显示,对于一组低质量的四烷基铵盐(<1000 m/z),实现了超过500的分辨率,具有高信噪比信号。对于多聚体蛋白复合物链霉亲和素(53 kDa)和GroEL(800 kDa)获得的低信噪比数据也显示,重建到达时间分布的信噪比大幅增加。