化学
轨道轨道
质谱法
分辨率(逻辑)
离子
质谱
谱线
分析化学(期刊)
时域
分子
色谱法
物理
计算机科学
人工智能
有机化学
计算机视觉
天文
作者
Jared O. Kafader,Rafael D. Melani,Michael W. Senko,Alexander Makarov,Neil L. Kelleher,Philip D. Compton
标识
DOI:10.1021/acs.analchem.8b04519
摘要
It is well-known that with Orbitrap-based Fourier-transform-mass-spectrometry (FT-MS) analysis, longer-time-domain signals are needed to better resolve species of interest. Unfortunately, increasing the signal-acquisition period comes at the expense of increasing ion decay, which lowers signal-to-noise ratios and ultimately limits resolution. This is especially problematic for intact proteins, including antibodies, which demonstrate rapid decay because of their larger collisional cross-sections, and result in more frequent collisions with background gas molecules. Provided here is a method that utilizes numerous low-ion-count spectra and single-ion processing to reconstruct a conventional m/z spectrum. This technique has been applied to proteins varying in molecular weight from 8 to 150 kDa, with a resolving power of 677 000 achieved for transients of carbonic anhydrase (29 kDa) with a duration of only ∼250 ms. A resolution improvement ranging from 10- to 20-fold was observed for all proteins, providing isotopic resolution where none was previously present.
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