Marina A, García M A, Albar J P, Yagüe J, López de Castro J A, Vázquez J
Centro de Biología Molecular Severo Ochoa, CSIC-Universidad Autónoma de Madrid, Spain.
J Mass Spectrom. 1999 Jan;34(1):17-27. doi: 10.1002/(SICI)1096-9888(199901)34:1<17::AID-JMS746>3.0.CO;2-6.
This paper describes experience with the commercially available LCQ quadrupole ion trap mass spectrometer applied to the off-line analysis of peptides and proteins. The standard front end of the electrospray probe was replaced with a micromanipulator which, with the aid of a magnifying device, allowed the use of a variety of miniaturized spraying interfaces. The low sample consumption and extended analysis times of these devices were ideally suitable to obtain improved results in terms of sensitivity and mass accuracy. This needed a careful optimization of the number of ions stored inside the trap (ion target parameter) and required spectrum averaging of many scans. A method is presented for the mathematical fitting of ZoomScan spectra to theoretical isotopic distributions, which allowed the mass determination of large peptides with more accuracy than that achieved by conventional deconvolution algorithms. A very simple on-line desalting configuration is also described which needed no external micro-high-performance liquid chromatographic pumps, and can be easily mounted using the built-in syringe delivery system of the LCQ. This set-up allowed extended analysis times of 'in-gel' protein digests in subpicomole amounts. Finally, the multiple fragmentation capabilities of the ion trap were found to be extremely useful for the analysis of peptide modifications such as phosphorylation and for sequencing individual peptides from highly complex MHC-bound peptide pools.
本文描述了将商用LCQ四极杆离子阱质谱仪应用于肽和蛋白质离线分析的经验。电喷雾探头的标准前端被一个微操纵器取代,该微操纵器借助一个放大装置,允许使用各种小型化喷雾接口。这些装置的低样品消耗和延长的分析时间非常适合在灵敏度和质量精度方面获得更好的结果。这需要仔细优化阱内存储的离子数量(离子目标参数),并需要对多次扫描进行光谱平均。本文提出了一种将ZoomScan光谱与理论同位素分布进行数学拟合的方法,该方法能够比传统的去卷积算法更准确地测定大肽的质量。还描述了一种非常简单的在线脱盐配置,该配置不需要外部微型高效液相色谱泵,并且可以使用LCQ的内置注射器输送系统轻松安装。这种设置允许对亚皮摩尔量的“胶内”蛋白质消化物进行延长的分析时间。最后,发现离子阱的多重碎裂能力对于分析肽修饰(如磷酸化)以及从高度复杂的MHC结合肽库中对单个肽进行测序非常有用。