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用于探测核酸结构和折叠的多荧光团荧光共振能量转移

Multi-fluorophore fluorescence resonance energy transfer for probing nucleic acids structure and folding.

作者信息

Liu Juewen, Lu Yi

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign, Urbana, IL, USA.

出版信息

Methods Mol Biol. 2006;335:257-71. doi: 10.1385/1-59745-069-3:257.

Abstract

Fluorescence resonance energy transfer (FRET) is a widely used technique to study the structure and dynamics of nucleic acids in solution. Such a technique often uses only one donor fluorophore and one acceptor fluorophore to probe the distance and its changes between the two labeled sites. To fully understand molecules with complicated structures, such as three- or four-way DNA junctions, several dual-fluorophore experiments have to be performed. Here, we describe an emerging alternative technique using multi-fluorophore FRET, in which simultaneous labeling of one molecule with several different fluorophores is performed to acquire all the distance information in a single experiment. This method decreases the number of experiments necessary to perform and increases the consistency of the results. In this chapter, FRET study of a tri-fluorophore-labeled DNAzyme serves as an example to illustrate the design of multi-fluorophore FRET experiments and the related data processing and analysis. The (ratio)A method used to calculate FRET efficiency in dual-fluorophore systems is extended to multi-fluorophore systems. An important difference between dual- and multi-fluorophore systems is that, when a multi-fluorophore system is used, FRET efficiency is no longer a reliable parameter to assess folding. Instead, fluorophore-to-fluorophore distance should be used.

摘要

荧光共振能量转移(FRET)是一种广泛用于研究溶液中核酸结构和动力学的技术。这种技术通常仅使用一个供体荧光团和一个受体荧光团来探测两个标记位点之间的距离及其变化。为了全面了解具有复杂结构的分子,如三链或四链DNA连接体,必须进行多个双荧光团实验。在此,我们描述了一种新兴的替代技术——使用多荧光团FRET,即对一个分子同时用几种不同的荧光团进行标记,以便在单个实验中获取所有距离信息。该方法减少了所需进行的实验数量,并提高了结果的一致性。在本章中,以三荧光团标记的脱氧核酶的FRET研究为例,说明多荧光团FRET实验的设计以及相关的数据处理和分析。用于计算双荧光团系统中FRET效率的(比率)A方法被扩展到多荧光团系统。双荧光团系统和多荧光团系统之间的一个重要区别是,当使用多荧光团系统时,FRET效率不再是评估折叠的可靠参数。相反,应该使用荧光团与荧光团之间的距离。

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