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首页> 外文期刊>Molecular pharmaceutics >A novel rhodamine-riboflavin conjugate probe exhibits distinct fluorescence resonance energy transfer that enables riboflavin trafficking and subcellular localization studies.
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A novel rhodamine-riboflavin conjugate probe exhibits distinct fluorescence resonance energy transfer that enables riboflavin trafficking and subcellular localization studies.

机译:新型若丹明-核黄素共轭探针显示出独特的荧光共振能量转移,可进行核黄素运输和亚细胞定位研究。

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摘要

Riboflavin (vitamin B2, RF) is taken up in eukaryotic cells via specialized transport mechanisms. Although RF has fluorescence properties, direct microscopic visualization of RF uptake and trafficking has been complicated by cellular autofluorescence. We describe the synthesis, cellular uptake characteristics, and spectroscopic properties of a novel rhodamine-riboflavin conjugate (RD-RF), including absorption and emission spectra, two-photon excitation spectra, and fluorescence pH dependence. The conjugate has a molar extinction coefficient of 23 670 M(-1) cm(-1) at 545 nm (excitation wavelength) with a fluorescence quantum yield of 0.94. This compound exhibits intramolecular fluorescence resonance energy transfer (FRET). Selective quenching of the FRET signal is observed when RD-RF is bound with high affinity by the chicken riboflavin carrier protein. In addition to the typical rhodamine excitation and emission, FRET provides a secondary signal for conjugate localization and an in situ mechanism for observing riboflavin binding. Solution and in vitro stability determinations indicate that the linkage between riboflavin and rhodamine is stable for the duration of typical pulse--chase and cellular trafficking experiments. The distinct spectroscopic properties of RD-RF together with a comparable affinity for RF-binding proteins render it an excellent tool for the study of RF transport and trafficking in living cells.
机译:核黄素(维生素B2,RF)通过专门的转运机制吸收在真核细胞中。尽管RF具有荧光特性,但是细胞自发荧光使RF摄取和运输的直接显微镜观察变得复杂。我们描述了新型罗丹明-核黄素共轭物(RD-RF)的合成,细胞吸收特性和光谱性质,包括吸收和发射光谱,两光子激发光谱和荧光pH依赖性。该共轭物在545 nm(激发波长)处的摩尔消光系数为23 670 M(-1)cm(-1),荧光量子产率为0.94。该化合物表现出分子内荧光共振能量转移(FRET)。当RD-RF与鸡核黄素载体蛋白高亲和力结合时,观察到FRET信号的选择性淬灭。除了典型的罗丹明激发和发射之外,FRET还提供了用于缀合物定位的次级信号和用于观察核黄素结合的原位机理。溶液和体外稳定性的测定表明核黄素和若丹明之间的联系在典型的脉冲追踪和细胞运输实验期间是稳定的。 RD-RF的独特光谱特性以及对RF结合蛋白的相似亲和力使其成为研究活细胞中RF转运和运输的极佳工具。

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