Center for Intelligent Chemical Instrumentation, Department of Chemistry and Biochemistry, Ohio University, Athens, Ohio 45701, USA.
Anal Chem. 2010 Aug 15;82(16):6926-32. doi: 10.1021/ac1011602.
This paper reports a systemic mass spectrometry (MS) investigation of a novel strategy for labeling biological thiols, involving the cleavage of the Se-N bond by thiol to form a new Se-S bond. Our data show that the reaction is highly selective, rapid, reversible, and efficient. Among 20 amino acids, only cysteine is reactive toward Se-N containing reagents and the reaction occurs in seconds. With the addition of dithiothreitol, peptides derivatized by selenium reagents can be recovered. The high reaction selectivity and reversibility provide potential in both selective identification and isolation of thiols from mixtures. Also, with dependence on the selenium reagent used, derivatized peptide ions exhibit tunable dissociation behaviors (either facile cleavage or preservation of the formed Se-S bond upon collision-induced dissociation), a feature that is useful in proteomics studies. Equally importantly, the thiol derivatization yield is striking, as reflected by 100% conversion of protein beta-lactoglobulin A using ebselen within 30 s. In addition, preliminary applications such as rapid screening of thiol peptides from mixtures and identification of the number of protein free and bound thiols have been demonstrated. The unique selenium chemistry uncovered in this study would be valuable in the MS analysis of thiols and disulfide bonds of proteins/peptides.
本文报道了一种新型生物硫醇标记策略的系统质谱(MS)研究,涉及通过硫醇裂解 Se-N 键形成新的 Se-S 键。我们的数据表明,该反应具有高度选择性、快速、可逆和高效的特点。在 20 种氨基酸中,只有半胱氨酸对含 Se-N 的试剂有反应性,反应在几秒钟内发生。加入二硫苏糖醇后,可以回收硒试剂衍生的肽。高反应选择性和可逆性为从混合物中选择性鉴定和分离硫醇提供了潜力。此外,根据所用硒试剂的不同,衍生肽离子表现出可调节的解离行为(碰撞诱导解离时容易裂解或保留形成的 Se-S 键),这一特性在蛋白质组学研究中很有用。同样重要的是,硫醇衍生化的产率非常显著,使用 ebselen 在 30 秒内可将蛋白质β-乳球蛋白 A 的转化率达到 100%。此外,已经证明了该方法在混合物中快速筛选硫肽和鉴定蛋白质游离和结合硫醇数量方面的初步应用。本研究中发现的独特硒化学在 MS 分析硫醇和蛋白质/肽中二硫键方面具有重要价值。