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Energy migration alters the fluorescence lifetime of Cerulean: implications for fluorescence lifetime imaging Forster resonance energy transfer measurements

机译:能量迁移改变Cerulean的荧光寿命:对荧光寿命成像的影响Forster共振能量转移测量

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摘要

Förster resonance energy transfer (FRET) is a physical phenomenon used to study molecular interactions in living cells. Changes in the fluorescence lifetime of proteins genetically tagged with a donor fluorophore, such as cyan fluorescent protein or Cerulean, are used to measure energy transfer to a protein tagged with an acceptor fluorophore (yellow fluorescent protein or Venus). Increased transfer efficiency is usually interpreted as closer proximity. Resonance energy transfer is also possible between identical fluorophores. This form of FRET is called energy migration resonance energy transfer (EM-RET). Theoretically, EM-RET should not alter the lifetime or emission spectrum measured from a population of fluorophores. We find a change in the fluorescent lifetime of Cerulean that correlates with energy migration and can result in significant errors when using Cerulean as a donor to measure FRET efficiencies based on fluorescence lifetimes.
机译:福斯特共振能量转移(FRET)是一种物理现象,用于研究活细胞中的分子相互作用。用供体荧光团遗传标记的蛋白质(例如,青色荧光蛋白或Cerulean)的荧光寿命变化用于测量能量转移至用受体荧光团标记的蛋白质(黄色荧光蛋白质或金星)。传输效率的提高通常被解释为更接近。相同荧光团之间也可能发生共振能量转移。 FRET的这种形式称为能量迁移共振能量转移(EM-RET)。从理论上讲,EM-RET不应改变荧光团的寿命或发射光谱。我们发现Cerulean荧光寿命的变化与能量迁移相关,当使用Cerulean作为供体基于荧光寿命测量FRET效率时,可能导致重大错误。

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