Mason A Z, Storms S D, Jenkins K D
Molecular Ecology Institute, California State University, Long Beach 90840.
Anal Biochem. 1990 May 1;186(2):187-201. doi: 10.1016/0003-2697(90)90066-i.
The feasibility of using directly coupled size exclusion high-performance liquid chromatography inductively coupled plasma mass spectroscopy (HPLC/ICP-MS) for the separation and subsequent elemental analysis of metalloproteins in biological samples has been studied. Data, on up to eight elements, was acquired simultaneously and the reconstructed elemental profiles from the chromatographed samples were quantified by flow injection analysis. Absolute and relative detection limits, reproducibility, operational dynamic range, and linearity of response were initially evaluated by analyzing standards of metallothionein protein of known elemental composition for Cd, Zn, and Cu. There was evidence of displacement of Zn from the protein during chromatography and the substitution of Cu sequestered from the mobile phase. Cd associated with the protein was fully recovered during chromatography. Memory effects, due to protein adsorption to the glassware in the torch box, were minimal and there was no degradation of the resolution of the chromatographed peak during extended transport through the HPLC/ICP-MS interface. The versatility of the technique has been demonstrated by the quantitative multi-element analysis of cytosolic metal-binding proteins separated from the polychaete worm Neanthes arenaceodentata. Fidelity of analysis has been demonstrated by two independent procedures: first, by comparing the elemental profiles obtained by directly aspirating the HPLC eluant into the ICP-MS to those obtained by collecting fractions and quantifying the metal content of the proteins in the conventional analytical mode; second, by comparing the stable isotopic profiles for 114Cd obtained by simultaneous ICP-MS analysis with radiometric profiles of 109Cd obtained by counting radioactivity associated with collected fractions.(ABSTRACT TRUNCATED AT 250 WORDS)
研究了使用直接耦合尺寸排阻高效液相色谱-电感耦合等离子体质谱联用技术(HPLC/ICP-MS)对生物样品中的金属蛋白进行分离及后续元素分析的可行性。同时获取了多达八种元素的数据,并通过流动注射分析对色谱分离样品的重建元素谱进行定量。通过分析已知镉、锌和铜元素组成的金属硫蛋白标准品,初步评估了绝对和相对检测限、重现性、操作动态范围及响应线性。色谱过程中有锌从蛋白质中被置换以及从流动相中螯合的铜发生取代的迹象。与蛋白质结合的镉在色谱过程中能完全回收。由于蛋白质吸附在炬箱中的玻璃器皿上导致的记忆效应极小,且在通过HPLC/ICP-MS接口的长时间传输过程中,色谱峰的分辨率没有下降。通过对从多毛纲蠕虫沙蚕中分离出的胞质金属结合蛋白进行定量多元素分析,证明了该技术的通用性。通过两种独立方法证明了分析的准确性:第一,将直接将HPLC洗脱液吸入ICP-MS获得的元素谱与通过收集馏分并以传统分析模式定量蛋白质中的金属含量获得的元素谱进行比较;第二,将通过ICP-MS同步分析获得的114Cd稳定同位素谱与通过对收集馏分相关放射性计数获得的109Cd放射性谱进行比较。(摘要截短于250字)