Liu Yang, Wilson W David
Department of Chemistry, Georgia State University, Atlanta, GA, USA.
Methods Mol Biol. 2010;613:1-23. doi: 10.1007/978-1-60327-418-0_1.
Surface plasmon resonance (SPR) technology with biosensor surfaces has become a widely-used tool for the study of nucleic acid interactions without any labeling requirements. The method provides simultaneous kinetic and equilibrium characterization of the interactions of biomolecules as well as small molecule-biopolymer binding. SPR monitors molecular interactions in real time and provides significant advantages over optical or calorimetic methods for systems with strong binding coupled to small spectroscopic signals and/or reaction heats. A detailed and practical guide for nucleic acid interaction analysis using SPR-biosensor methods is presented. Details of the SPR technology and basic fundamentals are described with recommendations on the preparation of the SPR instrument, sensor chips, and samples, as well as extensive information on experimental design, quantitative and qualitative data analysis and presentation. A specific example of the interaction of a minor-groove-binding agent with DNA is evaluated by both kinetic and steady-state SPR methods to illustrate the technique. Since the molecules that bind cooperatively to specific DNA sequences are attractive for many applications, a cooperative small molecule-DNA interaction is also presented.
带有生物传感器表面的表面等离子体共振(SPR)技术已成为一种广泛应用于核酸相互作用研究的工具,无需任何标记要求。该方法可同时对生物分子相互作用以及小分子 - 生物聚合物结合进行动力学和平衡表征。SPR实时监测分子相互作用,对于具有强结合且伴有小光谱信号和/或反应热的系统,它比光学或量热法具有显著优势。本文给出了使用SPR生物传感器方法进行核酸相互作用分析的详细实用指南。文中描述了SPR技术的细节和基本原理,给出了SPR仪器、传感器芯片和样品制备的建议,以及关于实验设计、定量和定性数据分析与呈现的广泛信息。通过动力学和稳态SPR方法评估了一种小沟结合剂与DNA相互作用的具体实例,以说明该技术。由于协同结合特定DNA序列的分子在许多应用中具有吸引力,本文还介绍了一种协同小分子 - DNA相互作用。