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首页> 外文期刊>Journal of Fluorescence >Determination of copper(II) ion concentration by lifetime measurements of green fluorescent protein
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Determination of copper(II) ion concentration by lifetime measurements of green fluorescent protein

机译:通过绿色荧光蛋白的寿命测量确定铜离子浓度

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摘要

The understanding of cellular processes and functions and the elucidation of their physiological mechanisms is an important aim in the life sciences. One important aspect is the uptake and the release of essential substances as well as their interactions with the cellular environment. As green fluorescent protein (GFP) can be genetically encoded in cells it can be used as an internal sensor giving a deeper insight into biochemical pathways. Here we report that the presence of copper(II) ions leads to a decrease of the fluorescence lifetime (τ _(fl)) of GFP and provide evidence for F?rster resonance energy transfer (FRET) as the responsible quenching mechanism. We identify the His 6-tag as the responsible binding site for Cu ~(2+) with a dissociation constant K _d = 9 ± 2 μM and a F?rster radius R0 = 2.1 ± 0.1 nm. The extent of the lifetime quenching depends on [Cu ~(2+)] which is comprehended by a mathematical titration model. We envision that Cu ~(2+) can be quantified noninvasively and in real-time by measuring τ _(fl) of GFP.
机译:对细胞过程和功能的理解以及对它们生理机制的阐明是生命科学的重要目标。一个重要方面是必需物质的吸收和释放以及它们与细胞环境的相互作用。由于绿色荧光蛋白(GFP)可以在细胞中进行基因编码,因此可以用作内部传感器,从而深入了解生化途径。在这里,我们报告铜(II)离子的存在导致GFP的荧光寿命(τ_(fl))的减少,并提供Fsterster共振能量转移(FRET)作为负责的淬灭机制的证据。我们确定His 6标签为Cu〜(2+)的负责结合位点,其解离常数K _d = 9±2μM,Fster半径R0 = 2.1±0.1 nm。寿命淬灭的程度取决于数学滴定模型所理解的[Cu〜(2+)]。我们设想可以通过测量GFP的τ_(fl)来无创地和实时地定量Cu〜(2+)。

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