首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Spectral versatility off single reef coral fluorescent proteins detected by spectrally-resolved single molecule spectroscopy
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Spectral versatility off single reef coral fluorescent proteins detected by spectrally-resolved single molecule spectroscopy

机译:光谱分辨单分子光谱法检测单礁珊瑚荧光蛋白的光谱通用性

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摘要

We use spectrally-resolved room temperature single molecule spectroscopy to yield insights into the occurrence and dynamics of spectral forms of single tetramers of DsRed and its variants DsRed2, Fluorescent Timer, DsRed_N42H and AG4. The red-emitting chromophore in DsRed and all studied variants readily converts into a high quantum efficiency super-red emitting form. We propose the existence of two super-red forms of different quantum efficiencies. The observed emission from the green-emitting chromophore is consistent with bulk spectroscopy. We further observe distinct new spectral forms from each variant, which we attribute to a photoinduced chemical reaction leading to a truncated form of the red-emitting chromophore analogous to the chromophore in the visible fluorescent protein zFP538. Our results have implications for the accurate interpretation of biological and biochemical processes illuminated by fluorescent proteins as well as for choosing appropriate experimental configurations.
机译:我们使用光谱解析的室温单分子光谱技术来深入了解DsRed及其变体DsRed2,荧光定时器,DsRed_N42H和AG4的单个四聚体的光谱形式的发生和动力学。 DsRed中的发红光发色团和所有研究的变体都可以轻松转换为高量子效率的超红发色形式。我们提出存在两种不同量子效率的超红色形式。从绿色发色团观察到的发射与体光谱学一致。我们进一步观察到了每个变体的不同新光谱形式,这归因于光诱导的化学反应,导致类似于可见荧光蛋白zFP538中发色团的红色发光发色团的截短形式。我们的结果对荧光蛋白照明的生物学和生化过程的准确解释以及选择合适的实验配置具有启示意义。

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