Institute of Analytical Sciences, IPREM, UMR 5254, CNRS-UPPA, Hélioparc, 2 Avenue Angot, 64053 Pau, France.
Int J Mol Sci. 2018 Feb 11;19(2):543. doi: 10.3390/ijms19020543.
A method for the quantitation of proteinaceous selenocysteine (SeCys) in Se-rich yeast was developed. The method is based on the reduction of the Se-Se and S-Se bridges with dithiotretiol, derivatization with iodoacetamide (carbamidomethylation), followed by HPLC-ICP MS. The chromatographic conditions were optimized for the total recovery of the proteinaceous selenocysteine, the minimum number of peaks in the chromatogram (reduction of derivatization products of other Se-species present) and the baseline separation. A typical chromatogram of a proteolytic digest of selenized yeast protein consisted of up to five peaks (including SeMet, carbamidomethylated (CAM)-SeCys, and Se(CAM)₂) identified by retention time matching with available standards and electrospray MS. Inorganic selenium non-specifically attached to proteins and selenomethionine could be quantified (in the form of Se(CAM)₂) along with SeCys. Selenocysteine, selenomethionine, inorganic selenium, and the water soluble-metabolite fraction accounted for the totality of selenium species in Se-rich yeast.
建立了一种定量测定富硒酵母中蛋白质硒代半胱氨酸(SeCys)的方法。该方法基于二硫苏糖醇还原 Se-Se 和 S-Se 键,然后用碘乙酰胺(氨甲酰化)衍生化,最后进行 HPLC-ICP MS 分析。对色谱条件进行了优化,以实现蛋白质硒代半胱氨酸的完全回收、色谱图中峰数最少(减少其他存在的 Se 物种的衍生化产物)和基线分离。经蛋白酶解的硒化酵母蛋白的典型色谱图由多达五个峰组成(包括 SeMet、氨甲酰化(CAM)-SeCys 和 Se(CAM)₂),通过保留时间与现有标准和电喷雾 MS 匹配进行鉴定。可以定量测定非特异性结合在蛋白质上的无机硒和硒代蛋氨酸(以 Se(CAM)₂的形式)以及 SeCys。硒代半胱氨酸、硒代蛋氨酸、无机硒和水溶性代谢物部分占富硒酵母中所有硒物种的总和。