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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Ratiometric fluorescence imaging of dual bio-molecular events in single living cells using a new FRET pair mVenus/mKOκ-based biosensor and a single fluorescent protein biosensor
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Ratiometric fluorescence imaging of dual bio-molecular events in single living cells using a new FRET pair mVenus/mKOκ-based biosensor and a single fluorescent protein biosensor

机译:使用新的基于FRET对的基于mVenus /mKOκ的生物传感器和单个荧光蛋白生物传感器对单个活细胞中的双重生物分子事件进行比例荧光成像

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摘要

Genetically coded fluorescent protein (FP)-based biosensors are powerful tools for the non-invasive tracking of molecular events in living cells. Although a variety of FP biosensors are available, the simultaneous imaging of multiple biosensors (multi-parameter imaging) in single living cells remains a challenge and is far from routinely used to elucidate the intricate networks of molecular events. In this study, we established a novel combination of FP biosensors for dual-parameter ratiometric imaging, consisting of a new fluorescence resonance energy transfer (FRET) pair mVenus (yellow FP)/mKOκ (orange FP)-based (abbreviated as YO) biosensor and a single FP-based biosensor Grx1-roGFP2. Under our imaging condition, 1.4±0.05% of Grx1-roGFP2 signal contributes to the mVenus channel and 5.2±0.12% of the mVenus signal contributes to the Grx1-roGFP2 channel. We demonstrate that such low degree of cross-talk causes negligible distortion of the ratiometric signal of the YO-based FRET biosensor and Grx1-roGFP2. By using this dual-parameter ratiometric imaging approach, we achieved simultaneous imaging of Src/Ca ~(2+) signaling and glutathione (GSH) redox potential in a single cell, which was previously unattainable. Furthermore, we provided direct evidence that epidermal growth factor (EGF)-induced Src signaling was negatively regulated by H _2O _2 via its effect on GSH-based redox system, demonstrating the power of this dual-parameter imaging approach for elucidating new connections between different molecular events that occur in a single cell. More importantly, the dual-parameter imaging approach described in this study is highly extendable.
机译:基于遗传编码荧光蛋白(FP)的生物传感器是用于无创跟踪活细胞中分子事件的强大工具。尽管可以使用多种FP生物传感器,但是在单个活细胞中同时成像多个生物传感器(多参数成像)仍然是一个挑战,远非常规用于阐明复杂分子事件网络的挑战。在这项研究中,我们建立了用于双参数比例成像的FP生物传感器的新型组合,其中包括基于mVenus(黄色FP)/mKOκ(橙色FP)的新型荧光共振能量转移(FRET)对(缩写为YO)生物传感器以及一个基于FP的生物传感器Grx1-roGFP2。在我们的成像条件下,1.4±0.05%的Grx1-roGFP2信号贡献于mVenus通道,而5.2±0.12%的mVenus信号贡献于Grx1-roGFP2通道。我们证明了这种低程度的串扰导致基于YO的FRET生物传感器和Grx1-roGFP2的比例信号的失真可忽略不计。通过使用这种双参数比例成像方法,我们实现了单个细胞中Src / Ca〜(2+)信号和谷胱甘肽(GSH)氧化还原电位的同时成像,这是以前无法实现的。此外,我们提供了直接的证据,表明表皮生长因子(EGF)诱导的Src信号传导受H _2O _2对其基于GSH的氧化还原系统的负调控,证明了这种双参数成像方法在阐明不同细胞之间新连接方面的作用在单个细胞中发生的分子事件。更重要的是,本研究中描述的双参数成像方法具有高度的可扩展性。

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