Medina Miguel Angel, Schwille Petra
Department of Molecular Biology and Biochemistry, Faculty of Sciences, University of Málaga, Spain.
Bioessays. 2002 Aug;24(8):758-64. doi: 10.1002/bies.10118.
The recent development of single molecule detection techniques has opened new horizons for the study of individual macromolecules under physiological conditions. Conformational subpopulations, internal dynamics and activity of single biomolecules, parameters that have so far been hidden in large ensemble averages, are now being unveiled. Herein, we review a particular attractive solution-based single molecule technique, fluorescence correlation spectroscopy (FCS). This time-averaging fluctuation analysis which is usually performed in Confocal setups combines maximum sensitivity with high statistical confidence. FCS has proven to be a very versatile and powerful tool for detection and temporal investigation of biomolecules at ultralow concentrations on surfaces, in solution, and in living cells. The introduction of dual-color cross-correlation and two-photon excitation in FCS experiments is currently increasing the number of promising applications of FCS to biological research.
单分子检测技术的最新发展为在生理条件下研究单个大分子开辟了新视野。单生物分子的构象亚群、内部动力学和活性,这些迄今为止隐藏在大量总体平均值中的参数,现在正被揭示出来。在此,我们综述一种特别有吸引力的基于溶液的单分子技术——荧光相关光谱法(FCS)。这种通常在共聚焦装置中进行的时间平均波动分析,将最大灵敏度与高统计置信度结合在一起。FCS已被证明是一种非常通用且强大的工具,可用于检测和实时研究表面、溶液及活细胞中超低浓度的生物分子。FCS实验中双色交叉相关和双光子激发的引入,目前正在增加FCS在生物学研究中前景广阔的应用数量。