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单分子的三色交替激光激发:监测多种相互作用和距离

Three-color alternating-laser excitation of single molecules: monitoring multiple interactions and distances.

作者信息

Lee Nam Ki, Kapanidis Achillefs N, Koh Hye Ran, Korlann You, Ho Sam On, Kim Younggyu, Gassman Natalie, Kim Seong Keun, Weiss Shimon

机构信息

School of Chemistry, Seoul National University, Seoul, Korea.

出版信息

Biophys J. 2007 Jan 1;92(1):303-12. doi: 10.1529/biophysj.106.093211. Epub 2006 Oct 13.

Abstract

We introduce three-color alternating-laser excitation (3c-ALEX), a fluorescence resonance energy transfer (FRET) method that measures up to three intramolecular distances and complex interaction stoichiometries of single molecules in solution. This tool extends substantially the capabilities of two-color ALEX, which employs two alternating lasers to study molecular interactions (through probe stoichiometry S) and intramolecular distances (through FRET efficiency E), and sorts fluorescent molecules in multi-dimensional probe-stoichiometry and FRET-efficiency histograms. Probe-stoichiometry histograms allowed analytical sorting, identification, and selection of diffusing species; selected molecules were subsequently represented in FRET-efficiency histograms, generating up to three intramolecular distances. Using triply labeled DNAs, we established that 3c-ALEX enables 1), FRET-independent analysis of three-component interactions; 2), observation and sorting of singly, doubly, and triply labeled molecules simultaneously present in solution; 3), measurements of three intramolecular distances within single molecules from a single measurement; and 4), dissection of conformational heterogeneity with improved resolution compared to conventional single-molecule FRET. We also used 3c-ALEX to study large biomolecules such as RNA polymerase-DNA transcription complexes, and monitor the downstream translocation of RNA polymerase on DNA from two perspectives within the complex. This study paves the way for advanced single-molecule analysis of complex mixtures and biomolecular machinery.

摘要

我们介绍了三色交替激光激发技术(3c-ALEX),这是一种荧光共振能量转移(FRET)方法,可测量溶液中单个分子的多达三个分子内距离和复杂的相互作用化学计量。该工具极大地扩展了双色ALEX的功能,双色ALEX利用两个交替激光来研究分子相互作用(通过探针化学计量S)和分子内距离(通过FRET效率E),并在多维探针化学计量和FRET效率直方图中对荧光分子进行分类。探针化学计量直方图允许对扩散物种进行分析分类、识别和选择;随后将选定的分子表示在FRET效率直方图中,生成多达三个分子内距离。使用三重标记的DNA,我们确定3c-ALEX能够实现:1)对三组分相互作用进行与FRET无关的分析;2)同时观察和分类溶液中同时存在的单标记、双标记和三标记分子;3)通过单次测量测量单个分子内的三个分子内距离;4)与传统单分子FRET相比,以更高的分辨率剖析构象异质性。我们还使用3c-ALEX研究了诸如RNA聚合酶-DNA转录复合物等大型生物分子,并从复合物内的两个角度监测RNA聚合酶在DNA上的下游易位。这项研究为复杂混合物和生物分子机器的高级单分子分析铺平了道路。

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