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Cyan-emitting and orange-emitting fluorescent proteins as a donor/acceptor pair for fluorescence resonance energy transfer

机译:发出蓝绿色和橙色发光的荧光蛋白作为荧光共振能量转移的供体/受体对

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GFP (green fluorescent protein)-based FRET (fluorescence resonance energy transfer) technology has facilitated the exploration of the spatio-temporal patterns of cellular signalling. While most studies have used cyan- and yellow-emitting FPs (fluorescent proteins) as FRET donors and acceptors respectively, this pair of proteins suffers from problems of pH-sensitivity and bleeding between channels. In the present paper, we demonstrate the use of an alternative additional donor/acceptor pair. We have cloned two genes encoding FPs from stony corals. We isolated a cyan-emitting FP from Acropara sp., whose tentacles exhibit cyan coloration. Similar to GFP from Renilla reniformis, the cyan FP forms a tight dimeric complex. We also discovered an orange-emitting FP from Fungia concinna. As the orange FP exists in a complex oligomeric structure, we converted this protein into a monomeric form through the introduction of three amino acid substitutions, recently reported to be effective for converting DsRed into a monomer (Clontech). We used the cyan FP and monomeric orange FP as a donor/acceptor pair to monitor the activity of caspase 3 during apoptosis. Due to the close spectral overlap of the donor emission and acceptor absorption (a large Forster distance), substantial pH-resistance of the donor fluorescence quantum yield and the acceptor absorbance, as well as good separation of the donor and acceptor signals, the new pair can be used for more effective quantitative FRET imaging.
机译:基于GFP(绿色荧光蛋白)的FRET(荧光共振能量转移)技术促进了细胞信号时空模式的探索。尽管大多数研究已分别使用发出青色和黄色的FP(荧光蛋白)作为FRET供体和受体,但这对蛋白却存在pH敏感性和通道间渗出的问题。在本文中,我们演示了使用另一种额外的供体/受体对。我们已经从石质珊瑚中克隆了两个编码FP的基因。我们从Acropara sp。分离出发蓝光的FP,其触角显示出青色。与来自肾性肾小球菌的GFP相似,青色FP形成紧密的二聚体复合物。我们还发现了来自Fungia concinna的橙色发光FP。由于橙色FP以复杂的寡聚结构形式存在,我们通过引入三个氨基酸取代将这种蛋白质转化为单体形式,最近报道称其可有效地将DsRed转化为单体(Clontech)。我们使用青色FP和单体橙色FP作为供体/受体对来监测凋亡过程中caspase 3的活性。由于供体发射和受体吸收之间的光谱重叠很近(较大的Forster距离),给体荧光量子产率和受体吸收率具有相当大的pH耐性,并且供体和受体信号之间的分离良好,可用于更有效的定量FRET成像。

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