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Development of a microscopic platform for real-time monitoring of biomolecular interactions

机译:开发用于实时监测生物分子相互作用的微观平台

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摘要

We developed a new microscopic platform for the real-time analysis of molecular interactions by combining microbead-tagging techniques with total internal reflection fluorescent microscopy (TIRFM). The optical manipulation of probe microbeads, followed by photo immobilization on a solid surface, enabled us to generate arrays with extremely high density (>100 microbeads in a 25 μm × 25 μm area), and TIRFM made it possible to monitor the binding reactions of fluorescently labeled targets onto probe microbeads without removal of free targets. We demonstrated the high performance of this platform through analyses of interactions between antigen and antibody and between small compounds and proteins. Then, recombinant protein levels in total cellular lysates of Escherichia coli were quantified from the association kinetics using antibody-immobilized microbead arrays, which served as a model for a protein-profiling array. Furthermore, in combination with in vitro synthesis-coupled protein labeling, we could kinematically analyze the interaction of nuclear factor κB (p50) with DNA. These results demonstrated that this platform enabled us to: (1) monitor binding processes of fluorescently labeled targets to multiple probes in real-time without removal of free targets, (2) determine concentrations of free targets only from the association kinetics at an early phase, and (3) greatly reduce the required volume of the target solution, in principle to subnanoliter, for molecular interaction analysis. The unique features of this microbead-based microarray system open the way to explore molecular interactions with a wide range of affinities in extremely small volumes of target solutions, such as extracts from single cells.
机译:我们通过结合微珠标记技术和全内反射荧光显微镜(TIRFM),开发了一种用于分子相互作用实时分析的新微观平台。光学操作探针微珠,然后将其光固定在固体表面上,使我们能够生成密度极高的阵列(在25μm×25μm的区域中> 100个微珠),而TIRFM使得监测微囊泡的结合反应成为可能。将荧光标记的目标物标记到探针微珠上,而不会去除游离目标物。通过分析抗原和抗体之间以及小分子化合物和蛋白质之间的相互作用,我们证明了该平台的高性能。然后,使用固定有抗体的微珠阵列(用作蛋白质谱分析阵列的模型),根据缔合动力学对大肠杆菌总细胞裂解物中的重组蛋白水平进行定量。此外,结合体外合成偶联蛋白标记,我们可以在运动学上分析核因子κB(p50)与DNA的相互作用。这些结果表明,该平台使我们能够:(1)实时监控荧光标记的靶标与多个探针的结合过程,而不会去除游离靶标,(2)仅从早期的缔合动力学确定游离靶标的浓度(3)从原理上讲大大减少了目标溶液所需的体积至亚纳升以下,以进行分子相互作用分析。这种基于微珠的微阵列系统的独特功能为探索在极少量目标溶液(例如单细胞提取物)中具有广泛亲和力的分子相互作用开辟了道路。

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