Department of Chemistry, University of Toledo, Toledo, OH, 43606, USA.
J Am Soc Mass Spectrom. 2013 Oct;24(10):1467-76. doi: 10.1007/s13361-013-0691-0. Epub 2013 Jul 27.
We report the development of a new AP visible-wavelength MALDI-ion trap-MS instrument with significantly improved performance over our previously reported system (Int. J. Mass Spectrom. 315, 66-73 (2012)). A Nd:YAG pulsed laser emitting light at 532 nm was used to desorb and ionize oligosaccharides and peptides in transmission geometry through a glass slide. Limits of detection (LODs) achieved in MS mode correspond to picomole quantities of oligosaccharides and femtomole quantities of peptides. Tandem MS (MS/MS) experiments enabled identification of enzymatically digested proteins and oligosaccharides by comparison of MS/MS spectra with data found in protein and glycan databases. Moreover, the softness of ionization, LODs, and fragmentation spectra of biomolecules by AP visible-wavelength MALDI-MS were compared to those obtained by AP UV MALDI-MS using a Nd:YAG laser emitting light at 355 nm. AP visible-wavelength MALDI appears to be a softer ionization technique then AP UV MALDI for the analysis of sulfated peptides, while visible-wavelength MALDI-MS, MS/MS, and MS/MS/MS spectra of other biomolecules analyzed were mostly similar to those obtained by AP UV MALDI-MS. Therefore, the methodology presented will be useful for MS and MS(n) analyses of biomolecules at atmospheric pressure. Additionally, the AP visible-wavelength MALDI developed can be readily used for soft ionization of analytes on various mass spectrometers.
我们报告了一种新的 AP 可见波长 MALDI-离子阱-MS 仪器的开发,该仪器在性能上明显优于我们之前报道的系统(Int. J. Mass Spectrom. 315, 66-73 (2012))。Nd:YAG 脉冲激光器发射 532nm 的光,用于通过玻璃载玻片以透射几何形状解吸和离子化寡糖和肽。MS 模式下的检测限 (LOD) 对应于皮摩尔数量的寡糖和飞摩尔数量的肽。串联 MS (MS/MS) 实验通过将 MS/MS 光谱与蛋白质和聚糖数据库中的数据进行比较,实现了对酶切蛋白质和寡糖的鉴定。此外,通过与使用 Nd:YAG 激光器发射 355nm 光的 AP UV MALDI 相比,比较了 AP 可见波长 MALDI 对生物分子的软电离、LOD 和碎片谱的影响。对于分析磺酸化肽,AP 可见波长 MALDI 似乎比 AP UV MALDI 更软的电离技术,而其他生物分子的可见波长 MALDI-MS、MS/MS 和 MS/MS/MS 谱与 AP UV MALDI-MS 获得的谱大多相似。因此,所提出的方法将有助于大气压下生物分子的 MS 和 MS(n)分析。此外,开发的 AP 可见波长 MALDI 可以很容易地用于各种质谱仪上分析物的软电离。