Hogenboom A C, de Boer A R, Derks R J, Irth H
Faculty of Sciences, Department of Analytical Chemistry and Applied Spectroscopy, Vrije Universiteit Amsterdam, The Netherlands.
Anal Chem. 2001 Aug 15;73(16):3816-23. doi: 10.1021/ac010026o.
A continuous-flow analytical screening system is presented using electrospray mass spectrometry to measure the interaction of biologically active compounds with soluble affinity proteins. The biochemical detection system is based on a solution-phase, homogeneous assay. In a first step, compounds to be screened (e.g., biotinylated compounds, concentration range 10-1,000 nmol/L) are injected into a continuous-flow reaction system and allowed to react with the affinity protein (e.g., streptavidin, concentration range 3-48 nmol/L). Subsequently, a reporter ligand (fluorescein-labeled biotin 96 nmol/L) is added to saturate the remaining free binding sites of the affinity protein and the concentration of unbound reporter ligand is measured using electrospray MS in the selectedion monitoring mode. The presence of active compounds in the sample results in an increase of the concentration of unbound reporter ligands. The feasibility of a homogeneous MS-based biochemical assay is demonstrated using streptavidin/biotin and anti-digoxigenin/digoxin as model systems. Compared to radioactive or fluorescence-based biochemical assays, the present assay format does not require the synthesis and purification of labels. Various analytical conditions were investigated to determine the ability of MS to measure the biochemical interactions. The availability of a single ligand that can be detected at 10-50 nmol/L concentrations by electrospray MS is sufficient to set up the biochemical assay. For the biospecific interactions studies, detection limits of 10-100 nmol/L were obtained.
本文介绍了一种连续流动分析筛选系统,该系统使用电喷雾质谱法来测量生物活性化合物与可溶性亲和蛋白之间的相互作用。生化检测系统基于溶液相均相分析。第一步,将待筛选的化合物(例如生物素化化合物,浓度范围为10 - 1000 nmol/L)注入连续流动反应系统中,使其与亲和蛋白(例如链霉亲和素,浓度范围为3 - 48 nmol/L)反应。随后,加入报告配体(荧光素标记的生物素96 nmol/L)以饱和亲和蛋白剩余的游离结合位点,并使用电喷雾质谱在选择离子监测模式下测量未结合报告配体的浓度。样品中活性化合物的存在会导致未结合报告配体浓度增加。使用链霉亲和素/生物素和抗地高辛/地高辛作为模型系统,证明了基于质谱的均相生化分析的可行性。与基于放射性或荧光的生化分析相比,本分析形式不需要合成和纯化标记物。研究了各种分析条件以确定质谱测量生化相互作用的能力。存在一种可通过电喷雾质谱在10 - 50 nmol/L浓度下检测到的单一配体,这足以建立生化分析。对于生物特异性相互作用研究,获得了10 - 100 nmol/L的检测限。