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一种对离子不敏感的 cAMP 生物传感器,用于在可变生理条件下进行长期定量比率荧光共振能量转移(FRET)测量。

An ion-insensitive cAMP biosensor for long term quantitative ratiometric fluorescence resonance energy transfer (FRET) measurements under variable physiological conditions.

机构信息

Department of Neuro- and Sensory Physiology, University of Göttingen, 37073 Göttingen, Germany.

出版信息

J Biol Chem. 2011 Jul 1;286(26):23419-31. doi: 10.1074/jbc.M111.236869. Epub 2011 Mar 28.

Abstract

Ratiometric measurements with FRET-based biosensors in living cells using a single fluorescence excitation wavelength are often affected by a significant ion sensitivity and the aggregation behavior of the FRET pair. This is an important problem for quantitative approaches. Here we report on the influence of physiological ion concentration changes on quantitative ratiometric measurements by comparing different FRET pairs for a cAMP-detecting biosensor. We exchanged the enhanced CFP/enhanced YFP FRET pair of an established Epac1-based biosensor by the fluorophores mCerulean/mCitrine. In the case of enhanced CFP/enhanced YFP, we showed that changes in proton, and (to a lesser extent) chloride ion concentrations result in incorrect ratiometric FRET signals, which may exceed the dynamic range of the biosensor. Calcium ions have no direct, but an indirect pH-driven effect by mobilizing protons. These ion dependences were greatly eliminated when mCerulean/mCitrine fluorophores were used. For such advanced FRET pairs the biosensor is less sensitive to changes in ion concentration and allows consistent cAMP concentration measurements under different physiological conditions, as occur in metabolically active cells. In addition, we verified that the described FRET pair exchange increased the dynamic range of the FRET efficiency response. The time window for stable experimental conditions was also prolonged by a faster biosensor expression rate in transfected cells and a greatly reduced tendency to aggregate, which reduces cytotoxicity. These properties were verified in functional tests in single cells co-expressing the biosensor and the 5-HT(1A) receptor.

摘要

在活细胞中使用单一荧光激发波长进行基于 FRET 的生物传感器的比率测量通常会受到显著的离子敏感性和 FRET 对聚集行为的影响。这是定量方法的一个重要问题。在这里,我们通过比较不同的 FRET 对用于检测 cAMP 的生物传感器,报告了生理离子浓度变化对定量比率测量的影响。我们用荧光团 mCerulean/mCitrine 替换了基于 Epac1 的已建立的生物传感器的增强型 CFP/增强型 YFP FRET 对。在增强型 CFP/增强型 YFP 的情况下,我们表明质子浓度以及(在较小程度上)氯离子浓度的变化会导致错误的比率 FRET 信号,这可能会超过生物传感器的动态范围。钙离子没有直接的影响,但通过动员质子会产生间接的 pH 驱动效应。当使用 mCerulean/mCitrine 荧光团时,这些离子依赖性大大消除。对于这种先进的 FRET 对,生物传感器对离子浓度变化的敏感性降低,并且允许在代谢活跃的细胞中发生的不同生理条件下进行一致的 cAMP 浓度测量。此外,我们验证了所描述的 FRET 对交换增加了 FRET 效率响应的动态范围。转染细胞中生物传感器表达率更快以及聚集趋势大大降低,从而减少细胞毒性,这也延长了稳定实验条件的时间窗口。这些特性在单个细胞中共表达生物传感器和 5-HT(1A)受体的功能测试中得到了验证。

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