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通过傅里叶寿命激发-发射矩阵光谱法进行的定量多色荧光共振能量转移测量。

Quantitative multi-color FRET measurements by Fourier lifetime excitation-emission matrix spectroscopy.

作者信息

Zhao Ming, Huang Run, Peng Leilei

机构信息

College of Optical Sciences, the University of Arizona, Tucson, Arizona 85721, USA.

出版信息

Opt Express. 2012 Nov 19;20(24):26806-27. doi: 10.1364/OE.20.026806.

Abstract

Förster resonant energy transfer (FRET) is extensively used to probe macromolecular interactions and conformation changes. The established FRET lifetime analysis method measures the FRET process through its effect on the donor lifetime. In this paper we present a method that directly probes the time-resolved FRET signal with frequency domain Fourier lifetime excitation-emission matrix (FLEEM) measurements. FLEEM separates fluorescent signals by their different phonon energy pathways from excitation to emission. The FRET process generates a unique signal channel that is initiated by donor excitation but ends with acceptor emission. Time-resolved analysis of the FRET EEM channel allows direct measurements on the FRET process, unaffected by free fluorophores that might be present in the sample. Together with time-resolved analysis on non-FRET channels, i.e. donor and acceptor EEM channels, time resolved EEM analysis allows precise quantification of FRET in the presence of free fluorophores. The method is extended to three-color FRET processes, where quantification with traditional methods remains challenging because of the significantly increased complexity in the three-way FRET interactions. We demonstrate the time-resolved EEM analysis method with quantification of three-color FRET in incompletely hybridized triple-labeled DNA oligonucleotides. Quantitative measurements of the three-color FRET process in triple-labeled dsDNA are obtained in the presence of free single-labeled ssDNA and double-labeled dsDNA. The results establish a quantification method for studying multi-color FRET between multiple macromolecules in biochemical equilibrium.

摘要

荧光共振能量转移(FRET)被广泛用于探测大分子相互作用和构象变化。已确立的FRET寿命分析方法通过其对供体寿命的影响来测量FRET过程。在本文中,我们提出了一种通过频域傅里叶寿命激发-发射矩阵(FLEEM)测量直接探测时间分辨FRET信号的方法。FLEEM通过荧光信号从激发到发射的不同声子能量路径来分离它们。FRET过程产生一个独特的信号通道,该通道由供体激发启动,但以受体发射结束。对FRET发射-激发矩阵(EEM)通道进行时间分辨分析,可以直接测量FRET过程,不受样品中可能存在的游离荧光团的影响。结合对非FRET通道(即供体和受体EEM通道)的时间分辨分析,时间分辨EEM分析能够在存在游离荧光团的情况下精确量化FRET。该方法扩展到了三色FRET过程,由于三向FRET相互作用的复杂性显著增加,传统方法在对其进行量化时仍然具有挑战性。我们通过对未完全杂交的三标记DNA寡核苷酸中的三色FRET进行量化,展示了时间分辨EEM分析方法。在存在游离单标记单链DNA和双标记双链DNA的情况下,获得了三标记双链DNA中三色FRET过程的定量测量结果。这些结果建立了一种用于研究生化平衡中多个大分子之间多色FRET的量化方法。

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