Zhao Ning-wei, Yao Jin-ting
Shimadzu Global COE for Application & Technical Development, Shanghai 200052, China.
Eur J Mass Spectrom (Chichester). 2010;16(6):663-71. doi: 10.1255/ejms.1099.
High-throughput proteomics aims to investigate dynamically changing proteins expressed by a full organism, specific tissue or cellular compartment under certain conditions. High-sensitivity mass spectrometry has gradually become a significant tool for characterizing peptides. Here, we analyzed angiotensin II using ultra-fast liquid chromatography (UFLC) coupled with matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-ToF MS). First, we applied UFLC in isolating and collecting the angiotensin II, and then Axima-Resonance (MALDI-QIT-ToF MS(5)) was adopted, which enables collision-induced dissociation-MS(5) analysis for fine structural characterization of angiotensin II. Resultant MS, MS(2), MS(3) and MS(4) spectra of interested M+H ions selected as precursor ions yielded detailed information about the sites of fragmentation as well as the amino acid sequence for angiotensin II; meanwhile, the average deviation between theoretical mass and actually measured mass from MS to MS(5) spectra was only 0.32 Da. It indicated that Axima-Resonance was capable of analyzing the peptide sequence accurately and provide the corresponding fragmentation information thoroughly, thus suggesting a potential strategy involving UFLC assay coupled with MALDI-QIT-ToF MS(5) analysis on high-throughput proteomics study in future.
高通量蛋白质组学旨在研究在特定条件下由完整生物体、特定组织或细胞区室表达的动态变化的蛋白质。高灵敏度质谱已逐渐成为表征肽段的重要工具。在此,我们使用超快速液相色谱(UFLC)结合基质辅助激光解吸/电离飞行时间质谱(MALDI-ToF MS)对血管紧张素II进行分析。首先,我们应用UFLC分离和收集血管紧张素II,然后采用Axima-Resonance(MALDI-QIT-ToF MS(5)),其能够进行碰撞诱导解离-MS(5)分析以对血管紧张素II进行精细结构表征。选定为前体离子的感兴趣的M+H离子的所得MS、MS(2)、MS(3)和MS(4)谱图产生了关于血管紧张素II的裂解位点以及氨基酸序列的详细信息;同时,从MS到MS(5)谱图的理论质量与实际测量质量之间的平均偏差仅为0.32 Da。这表明Axima-Resonance能够准确分析肽段序列并全面提供相应的裂解信息,从而为未来高通量蛋白质组学研究中涉及UFLC测定结合MALDI-QIT-ToF MS(5)分析的潜在策略提供了依据。