University of Orléans, CNRS, ICOA, UMR 7311, 45067, Orleans, France,
J Am Soc Mass Spectrom. 2014 Apr;25(4):538-47. doi: 10.1007/s13361-014-0826-y. Epub 2014 Feb 19.
In this report, enzyme-coupled magnetic nanoparticles (EMPs) were shown to be an effective affinity-based tool for finding specific interactions between enzymatic targets and the low-mass molecules in complex mixtures using classic MALDI-TOF apparatus. EMPs used in this work act as nonorganic matrix enabling ionization of small molecules without any interference in the low-mass range (enzyme-coupled nanoparticles-assisted laser desorption ionization MS, ENALDI MS) and simultaneously carry the superficial specific binding sites to capture inhibitors present in a studied mixture. We evaluated ENALDI approach in two complementary variations: 'ion fading' (IF-ENALDI), based on superficial adsorption of inhibitors and 'ion hunting' (IH-ENALDI), based on selective pre-concentration of inhibitors. IF-ENALDI was applied for two sets of enzyme-inhibitor pairs: tyrosinase-glabridin and trypsin-leupeptin and for the real plant sample: Sparrmannia discolor leaf and stem methanol extract. The efficacy of IH-ENALDI was shown for the pair of trypsin-leupeptin. Both ENALDI approaches pose an alternative for bioassay-guided fractionation, the common method for finding inhibitors in the complex mixtures.
在本报告中,酶偶联磁性纳米粒子 (EMPs) 被证明是一种有效的基于亲和性的工具,可使用经典的 MALDI-TOF 仪器在复杂混合物中找到酶靶标与低质量分子之间的特定相互作用。本工作中使用的 EMP 作为非有机基质,能够在低质量范围内实现小分子的离子化,而不会产生任何干扰(酶偶联纳米粒子辅助激光解吸电离 MS,ENALDI MS),同时携带表面特异性结合位点以捕获研究混合物中存在的抑制剂。我们在两种互补的变体中评估了 ENALDI 方法:基于抑制剂表面吸附的“离子消光”(IF-ENALDI)和基于抑制剂选择性预浓缩的“离子搜索”(IH-ENALDI)。IF-ENALDI 应用于两组酶-抑制剂对:酪氨酸酶-格拉宾和胰蛋白酶-亮肽素,以及真实的植物样品:变色 Sparrmannia 叶和茎甲醇提取物。IH-ENALDI 对胰蛋白酶-亮肽素对表现出了有效性。这两种 ENALDI 方法都为生物测定指导的分级分离提供了替代方法,这是在复杂混合物中寻找抑制剂的常用方法。