Joo Chirlmin, Ha Taekjip
Cold Spring Harb Protoc. 2012 Oct 1;2012(10):1109-12. doi: 10.1101/pdb.prot071548.
Single-molecule (sm) Förster (fluorescence) resonance energy transfer (FRET) is a spectroscopic technique in which the efficiency of energy transfer from donor to acceptor molecules is used to determine distances between molecules in the 30-80 Å range. Structural changes in biological molecules or relative motion between two interacting molecules can be detected by a change in FRET. To study the conformational changes of individual molecules over extended time periods, the molecules must be immobilized on a coated surface that allows highly specific tethering of DNA, RNA, or protein. Nevertheless, there are always some fluorescent impurities on the surface and, without experience in sm imaging, it is often difficult to distinguish molecules of interest from impurities. This protocol describes the use of an imaging buffer that enhances the photostability of cyanine dyes used for smFRET, with emphasis on distinguishing molecules of interest from impurities.
单分子(sm)Förster(荧光)共振能量转移(FRET)是一种光谱技术,其中从供体分子到受体分子的能量转移效率用于确定30 - 80 Å范围内分子之间的距离。生物分子的结构变化或两个相互作用分子之间的相对运动可以通过FRET的变化来检测。为了在较长时间内研究单个分子的构象变化,必须将分子固定在允许对DNA、RNA或蛋白质进行高度特异性拴系的包被表面上。然而,表面总是存在一些荧光杂质,并且如果没有单分子成像经验,通常很难将感兴趣的分子与杂质区分开来。本方案描述了一种成像缓冲液的使用,该缓冲液可增强用于单分子FRET的花青染料的光稳定性,重点在于将感兴趣的分子与杂质区分开来。