Key Laboratory of Pharmaceutical Quality Control of Hebei Province & College of Pharmaceutical Sciences, Hebei University, Baoding, 071002, China.
Rapid Commun Mass Spectrom. 2014 Feb 15;28(3):256-64. doi: 10.1002/rcm.6785.
Chemical derivatization is a very promising technique for improving analysis of peptides by mass spectrometry (MS). In this study, a novel kind of imidazolium-based aromatic quaternary ammonium tag, 1-[3-[(2-iodo-1-oxoethyl)amino]propyl]-3-butylimidazolium bromide (IPBI), designed with strong gas-phase basicity and a permanent positive charge, was firstly synthesized and further used for derivatization of cysteinyl-peptides with improved ionization efficiency and higher charge states.
Both the model peptides and tryptic digests of proteins were used to evaluate the effect of IPBI derivatization on the MS performance of the derivatized peptides, and the results were further compared with the commonly used iodoacetamide (IAA) tag. Matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF)-MS and electrospray ionization (ESI)-MS were used to evaluate the ionization efficiency and charge states of the derivatized peptides.
With model peptides as samples, a nearly 100% derivatization efficiency and superior stability were achieved via IPBI derivatization. By further analysis of both standard peptides and tryptic protein digests, the ionization efficiency and charge states of IPBI-derivatized peptides could be remarkably improved. For example, for protein bovine serum albumin, compared with the commercial available IAA tag, the identification efficiency of cysteinyl-peptides was increased about 67% by combining with IPBI derivatization.
The results indicated that the novel tag is an effective derivatization reagent for cysteinyl-peptide identification. We hope it could be further used for high-efficiency cysteinyl-peptide identification in proteome research, especially those with low abundance and poor ionization efficiency.
化学衍生化是一种非常有前途的技术,可以提高质谱(MS)分析肽的能力。在这项研究中,设计了一种新型的基于咪唑鎓的芳香季铵标签 1-[3-[(2-碘-1-氧代乙基)氨基]丙基]-3-丁基咪唑溴盐(IPBI),具有很强的气相碱性和永久正电荷,首次用于衍生半胱氨酸肽,以提高离化效率和更高的电荷态。
分别使用模型肽和蛋白质的胰蛋白酶消化物来评估 IPBI 衍生化对衍生化肽的 MS 性能的影响,并将结果与常用的碘乙酰胺(IAA)标签进行比较。基质辅助激光解吸/电离飞行时间(MALDI-TOF)-MS 和电喷雾电离(ESI)-MS 用于评估衍生化肽的离化效率和电荷态。
以模型肽为样品,通过 IPBI 衍生化可实现近 100%的衍生化效率和优异的稳定性。通过进一步分析标准肽和胰蛋白酶蛋白消化物,可显著提高 IPBI 衍生化肽的离化效率和电荷态。例如,对于蛋白质牛血清白蛋白,与市售的 IAA 标签相比,通过与 IPBI 衍生化结合,半胱氨酸肽的鉴定效率提高了约 67%。
结果表明,该新型标签是一种有效的半胱氨酸肽鉴定衍生化试剂。我们希望它可以进一步用于蛋白质组研究中高效的半胱氨酸肽鉴定,特别是那些丰度低、离化效率差的肽。