Department of Physical and Analytical Chemistry, Faculty of Chemistry, University of Oviedo, Julian Clavería, 8. 33006 Oviedo, Spain.
Anal Chem. 2011 Jul 1;83(13):5353-60. doi: 10.1021/ac200780b. Epub 2011 Jun 8.
We report for the first time the absolute quantification of a metalloprotein separated by nondenaturing gel electrophoresis (GE) using laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS) in combination with species-specific isotope dilution mass spectrometry (IDMS). The proposed method is based on the use of an isotopically enriched (57)Fe-transferrin complex to quantify natural transferrin (Tf) in human serum samples. First, the saturation process of Tf with natural abundance or isotopically enriched (57)Fe was accomplished by using freshly synthesized Fe-citrate solutions. The stability of the metal-protein complex as well as its stoichiometry was investigated by spectrophotometry and ICP-MS, demonstrating a satisfactory stability over a period of at least one month and a molar ratio Fe:Tf of 1.94 ± 0.09, which is close to the expected value of 2. The species-specific IDMS method was compared with external calibration using the Fe-Tf (absolute Tf amount between 2 and 10 μg) and different sample preparation procedures (stained and nonstained gels) as well as two laser ablation strategies (single line ablation in the direction perpendicular or horizontal to the electrophoretic migration) were evaluated. The proposed species-specific GE-LA-ICP-IDMS method was tested for the analysis of a serum certified reference material (ERM-DA470k/IFCC). The results were in good agreement with the certified value with relative standard deviation values in the range of 0.9-2.7% depending on the data treatment procedure used. Furthermore, the analysis time has been drastically reduced in comparison with previous approaches to less than 15 min. The quantification by species-specific GE-LA-ICP-IDMS allowed us to obtain accurate and precise results not only by analyzing the protein spot in the middle position but also in the adjacent ablation line to the center.
我们首次报道了通过非变性凝胶电泳(GE)分离的金属蛋白的绝对定量,该方法结合了物种特异性同位素稀释质谱法(IDMS)和激光烧蚀电感耦合等离子体质谱法(LA-ICP-MS)。该方法基于使用同位素富集的(57)Fe-转铁蛋白复合物来定量人血清样品中的天然转铁蛋白(Tf)。首先,通过使用新鲜合成的柠檬酸铁溶液来完成天然丰度或同位素富集的(57)Fe 与 Tf 的饱和过程。通过分光光度法和 ICP-MS 研究了金属-蛋白复合物的稳定性及其化学计量比,证明在至少一个月的时间内具有令人满意的稳定性,并且摩尔比 Fe:Tf 为 1.94 ± 0.09,接近预期值 2。与外部校准相比,物种特异性 IDMS 方法使用 Fe-Tf(绝对 Tf 量在 2 到 10 μg 之间)以及不同的样品制备程序(染色和非染色凝胶)进行了比较,并评估了两种激光烧蚀策略(垂直或水平于电泳迁移方向的单一线烧蚀)。该方法已用于分析血清认证参考物质(ERM-DA470k/IFCC),并与认证值吻合良好,相对标准偏差值在 0.9-2.7%之间,具体取决于所用的数据处理程序。此外,与以前的方法相比,分析时间大大缩短,不到 15 分钟。通过物种特异性 GE-LA-ICP-IDMS 进行定量不仅可以通过分析中间位置的蛋白斑点,还可以通过分析中心相邻的烧蚀线来获得准确和精确的结果。