Department of Molecular Biology, Princeton University, Princeton, New Jersey, USA.
J Am Soc Mass Spectrom. 2010 Jan;21(1):34-46. doi: 10.1016/j.jasms.2009.08.026. Epub 2009 Sep 17.
Current biological studies have been advanced by the continuous development of robust, accurate, and sensitive mass spectrometric technologies. The MALDI LTQ Orbitrap is a new addition to the Orbitrap configurations, known for their high resolving power and accuracy. This configuration provides features inherent to the MALDI source, such as reduced spectra complexity, forgiveness to contaminants, and sample retention for follow-up analyses with targeted or hypothesis-driven questions. Here we investigate its performance for characterizing the composition of isolated protein complexes. To facilitate the assessment, we selected two well characterized complexes from Saccharomyces cerevisiae, Apl1 and Nup84. Manual and automatic MS and MS/MS analyses readily resolved their compositions, with increased confidence of protein identification compared with our previous reports using MALDI QqTOF and MALDI IT. CID fragmentation of singly-charged peptides provided sufficient information for conclusive identification of the isolated proteins. We then assessed the resolution, accuracy, and sensitivity provided by this instrument in the context of analyzing the isolated protein assemblies. Our analysis of complex mixtures of singly-charged ions up to m/z 4000 showed that (1) the resolving power, inversely proportional to the square root of m/z, had over four orders of magnitude dynamic range; (2) internal calibration led to improved accuracy, with an average absolute mass error of 0.5 ppm and a distribution centered at 0 ppm; and (3) subfemtomole sensitivity was achieved using both CHCA and DHB matrices. Additionally, our analyses of a synthetic phosphorylated peptide in mixtures showed subfemtomole level of detection using neutral loss scanning.
当前的生物学研究得益于不断发展的强大、准确和灵敏的质谱技术。MALDI LTQ Orbitrap 是 Orbitrap 系列中的新增设备,以其高分辨率和准确性而闻名。该配置提供了 MALDI 源固有的功能,例如降低谱图复杂性、容忍污染物以及对后续分析进行保留,用于靶向或基于假设的问题。在这里,我们研究了它在表征分离蛋白复合物组成方面的性能。为了便于评估,我们从酿酒酵母中选择了两个具有良好特征的复合物 Apl1 和 Nup84。手动和自动 MS 和 MS/MS 分析很容易解析它们的组成,与我们之前使用 MALDI QqTOF 和 MALDI IT 的报告相比,提高了蛋白质鉴定的置信度。单电荷肽的 CID 碎裂提供了足够的信息,可用于对分离的蛋白质进行结论性鉴定。然后,我们评估了该仪器在分析分离蛋白组装体时提供的分辨率、准确性和灵敏度。我们对高达 m/z 4000 的单电荷离子的复杂混合物进行了分析,结果表明:(1) 分辨率与 m/z 的平方根成反比,具有超过四个数量级的动态范围;(2) 内部校准可提高准确性,平均绝对质量误差为 0.5 ppm,分布中心在 0 ppm;(3) 使用 CHCA 和 DHB 基质均可实现亚 femtomole 灵敏度。此外,我们在混合物中对合成磷酸化肽的分析表明,使用中性丢失扫描可达到亚 femtomole 级别的检测限。