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流式细胞术能够对适用于筛选的基因编码分子内FRET传感器进行多重测量。

Flow Cytometry Enables Multiplexed Measurements of Genetically Encoded Intramolecular FRET Sensors Suitable for Screening.

作者信息

Doucette Jaimee, Zhao Ziyan, Geyer Rory J, Barra Melanie M, Balunas Marcy J, Zweifach Adam

机构信息

Department of Molecular and Cell Biology, University of Connecticut at Storrs, Storrs, CT.

Division of Medicinal Chemistry, Department of Pharmaceutical Sciences, University of Connecticut at Storrs, Storrs, CT.

出版信息

J Biomol Screen. 2016 Jul;21(6):535-47. doi: 10.1177/1087057116634007. Epub 2016 Feb 23.

Abstract

Genetically encoded sensors based on intramolecular FRET between CFP and YFP are used extensively in cell biology research. Flow cytometry has been shown to offer a means to measure CFP-YFP FRET; we suspected it would provide a unique way to conduct multiplexed measurements from cells expressing different FRET sensors, which is difficult to do with microscopy, and that this could be used for screening. We confirmed that flow cytometry accurately measures FRET signals using cells transiently transfected with an ERK activity reporter, comparing responses measured with imaging and cytometry. We created polyclonal long-term transfectant lines, each expressing a different intramolecular FRET sensor, and devised a way to bar-code four distinct populations of cells. We demonstrated the feasibility of multiplexed measurements and determined that robust multiplexed measurements can be conducted in plate format. To validate the suitability of the method for screening, we measured responses from a plate of bacterial extracts that in unrelated experiments we had determined contained the protein kinase C (PKC)-activating compound teleocidin A-1. The multiplexed assay correctly identifying the teleocidin A-1-containing well. We propose that multiplexed cytometric FRET measurements will be useful for analyzing cellular function and for screening compound collections.

摘要

基于青色荧光蛋白(CFP)和黄色荧光蛋白(YFP)之间分子内荧光共振能量转移(FRET)的基因编码传感器在细胞生物学研究中被广泛应用。流式细胞术已被证明是一种测量CFP - YFP FRET的方法;我们怀疑它能提供一种独特的方式,对表达不同FRET传感器的细胞进行多重测量,而这用显微镜很难做到,并且这可用于筛选。我们通过用ERK活性报告基因瞬时转染的细胞,比较成像和流式细胞术测量的响应,证实了流式细胞术能准确测量FRET信号。我们创建了多克隆长期转染细胞系,每个细胞系表达一种不同的分子内FRET传感器,并设计了一种对四种不同细胞群体进行条形码标记的方法。我们证明了多重测量的可行性,并确定可以在平板形式下进行稳健的多重测量。为了验证该方法用于筛选的适用性,我们测量了一板细菌提取物的响应,在无关实验中我们已确定这些提取物含有蛋白激酶C(PKC)激活化合物teleocidin A - 1。多重测定正确地识别出含有teleocidin A - 1的孔。我们提出,多重细胞流式FRET测量将有助于分析细胞功能和筛选化合物库。

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