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用于活细胞中蛋白质-蛋白质相互作用测量的多光子荧光寿命成像(FLIM)仪器的设置与表征。

Setup and characterization of a multiphoton FLIM instrument for protein-protein interaction measurements in living cells.

作者信息

Waharte François, Spriet Corentin, Héliot Laurent

机构信息

Laboratoire d'Imagerie Cellulaire Fonctionnelle, Institut de Biologie de Lille/Institut Pasteur Lille, Lille, France.

出版信息

Cytometry A. 2006 Apr;69(4):299-306. doi: 10.1002/cyto.a.20240.

Abstract

BACKGROUND

Fluorescence lifetime microscopy (FLIM) is currently one of the best techniques to perform accurate measurements of interactions in living cells. It is independent of the fluorophore concentration, thus avoiding several common artifacts found in Förster Resonance Energy Transfer (FRET) imaging. However, for FLIM to achieve high performance, a rigorous instrumental setup and characterization is needed.

METHODS

We use known fluorophores to perform characterization experiments in our instrumental setup. This allows us to verify the accuracy of the fluorescence lifetime determination, and test the linearity of the instrument by fluorescence quenching.

RESULTS

We develop and validate here a protocol for rigorous characterization of time-domain FLIM instruments. Following this protocol, we show that our system provides accurate and reproducible measurements. We also used HeLa cells expressing proteins fused to Green Fluorescent Proteins variants (CFP and YFP) to confirm its ability to detect interactions in living cells by FRET.

CONCLUSIONS

We report a well-designed protocol in which precise and reproducible lifetime measurements can be performed. It is usable for all confocal-based FLIM instruments and is a useful tool for anyone who wants to perform quantitative lifetime measurements, especially when studying interactions in living cells using FRET.

摘要

背景

荧光寿命显微镜(FLIM)是目前在活细胞中进行相互作用精确测量的最佳技术之一。它与荧光团浓度无关,从而避免了在Förster共振能量转移(FRET)成像中发现的几种常见伪影。然而,为了使FLIM实现高性能,需要严格的仪器设置和表征。

方法

我们使用已知的荧光团在我们的仪器设置中进行表征实验。这使我们能够验证荧光寿命测定的准确性,并通过荧光猝灭测试仪器的线性。

结果

我们在此开发并验证了一种用于时域FLIM仪器严格表征的方案。按照该方案,我们表明我们的系统提供了准确且可重复的测量。我们还使用表达与绿色荧光蛋白变体(CFP和YFP)融合的蛋白质的HeLa细胞来确认其通过FRET检测活细胞中相互作用的能力。

结论

我们报告了一种精心设计的方案,其中可以进行精确且可重复的寿命测量。它适用于所有基于共聚焦的FLIM仪器,对于任何想要进行定量寿命测量的人来说都是一个有用的工具,特别是在使用FRET研究活细胞中的相互作用时。

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