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使用光谱技术评估荧光共振能量转移。

Assessing FRET using spectral techniques.

作者信息

Leavesley Silas J, Britain Andrea L, Cichon Lauren K, Nikolaev Viacheslav O, Rich Thomas C

机构信息

Department of Chemical and Biomolecular Engineering, University of South Alabama, Mobile, Alabama, 36688; Department of Pharmacology, University of South Alabama, Mobile, Alabama, 36688.

出版信息

Cytometry A. 2013 Oct;83(10):898-912. doi: 10.1002/cyto.a.22340. Epub 2013 Aug 8.

Abstract

Förster resonance energy transfer (FRET) techniques have proven invaluable for probing the complex nature of protein-protein interactions, protein folding, and intracellular signaling events. These techniques have traditionally been implemented with the use of one or more fluorescence band-pass filters, either as fluorescence microscopy filter cubes, or as dichroic mirrors and band-pass filters in flow cytometry. In addition, new approaches for measuring FRET, such as fluorescence lifetime and acceptor photobleaching, have been developed. Hyperspectral techniques for imaging and flow cytometry have also shown to be promising for performing FRET measurements. In this study, we have compared traditional (filter-based) FRET approaches to three spectral-based approaches: the ratio of acceptor-to-donor peak emission, linear spectral unmixing, and linear spectral unmixing with a correction for direct acceptor excitation. All methods are estimates of FRET efficiency, except for one-filter set and three-filter set FRET indices, which are included for consistency with prior literature. In the first part of this study, spectrofluorimetric data were collected from a CFP-Epac-YFP FRET probe that has been used for intracellular cAMP measurements. All comparisons were performed using the same spectrofluorimetric datasets as input data, to provide a relevant comparison. Linear spectral unmixing resulted in measurements with the lowest coefficient of variation (0.10) as well as accurate fits using the Hill equation. FRET efficiency methods produced coefficients of variation of less than 0.20, while FRET indices produced coefficients of variation greater than 8.00. These results demonstrate that spectral FRET measurements provide improved response over standard, filter-based measurements. Using spectral approaches, single-cell measurements were conducted through hyperspectral confocal microscopy, linear unmixing, and cell segmentation with quantitative image analysis. Results from these studies confirmed that spectral imaging is effective for measuring subcellular, time-dependent FRET dynamics and that additional fluorescent signals can be readily separated from FRET signals, enabling multilabel studies of molecular interactions. © 2013 International Society for Advancement of Cytometry.

摘要

福斯特共振能量转移(FRET)技术已被证明在探究蛋白质 - 蛋白质相互作用、蛋白质折叠和细胞内信号传导事件的复杂性质方面具有极高价值。传统上,这些技术是通过使用一个或多个荧光带通滤光片来实现的,既可以作为荧光显微镜滤光片组,也可以作为流式细胞术中的二向色镜和带通滤光片。此外,还开发了用于测量FRET的新方法,如荧光寿命和受体光漂白。用于成像和流式细胞术的高光谱技术在进行FRET测量方面也显示出前景。在本研究中,我们将传统的(基于滤光片的)FRET方法与三种基于光谱的方法进行了比较:受体与供体峰值发射的比率、线性光谱分解以及校正直接受体激发后的线性光谱分解。除了单滤光片组和三滤光片组FRET指数外,所有方法都是FRET效率的估计值,纳入这两个指数是为了与先前文献保持一致。在本研究的第一部分,从用于细胞内cAMP测量的CFP - Epac - YFP FRET探针收集了荧光光谱数据。所有比较均使用相同的荧光光谱数据集作为输入数据,以提供相关比较。线性光谱分解产生的测量结果具有最低的变异系数(0.10),并且使用希尔方程能得到准确拟合。FRET效率方法产生的变异系数小于0.20,而FRET指数产生的变异系数大于8.00。这些结果表明,光谱FRET测量比基于标准滤光片的测量提供了更好的响应。使用光谱方法,通过高光谱共聚焦显微镜、线性分解和定量图像分析进行细胞分割来进行单细胞测量。这些研究结果证实,光谱成像对于测量亚细胞、时间依赖性FRET动力学是有效的,并且额外的荧光信号可以很容易地与FRET信号分离,从而能够对分子相互作用进行多标记研究。© 2013国际细胞计量学会。

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Assessing FRET using spectral techniques.使用光谱技术评估荧光共振能量转移。
Cytometry A. 2013 Oct;83(10):898-912. doi: 10.1002/cyto.a.22340. Epub 2013 Aug 8.

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