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Fluorescence Emission and Polarization Analyses for Evaluating Binding of Ruthenium Metalloglycocluster to Lectin and Tetanus Toxin C-Fragment

机译:用于评估钌金属糖簇与凝集素和破伤风毒素C片段结合的荧光发射和偏振分析

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We have developed a fluorescent ruthenium metalloglycocluster as a powerful molecular probe for evaluating a binding event between carbohydrates and lectins by fluorescence emission (FE) and fluorescence polarization (FP) analysis. The fluorescent ruthenium metalloglycoclusters, [Ru(bpy-2Gal)_3] and [Ru(bpy-2Glc)_3], possess clustered galactose and glucose surrounding the ruthenium center. Changes in FE and FP of these metalloglycoclusters were measured by adding each lectin (Peanut agglutinin (PNA), Ricinus communis agglutinin 120 (RCA), Concanavalin A (ConA), or Wheat germ agglutinin (WGA)) or tetanus toxin c-fragment (TCF). Following the addition of PNA, the FE spectrum of [Ru(bpy-2Gal)_3] showed new emission peak and the FP value of [Ru(bpy-2Gal)_3] increased. Similarly, the FE spectrum of [Ru(bpy-2Glc)_3] showed new emission peak and the FP value increased following the addition of ConA. Since other combinations of the metalloglycoclusters and lectin caused little change, specific bindings of galactose to PNA and glucose to ConA were proved by the FE and FP measurement. From nonlinear least-squares fitting, dissociation constants (K_d) of [Ru(bpy-2Gal)_3] to PNA was 6.1 μM, while the K_d values of [Ru(bpy)_2(bpy-2Gal)] to PNA was ca. 10~(-4) M. Therefore, the clustered carbohydrates were proved to increase affinity to lectins. Furthermore, the FP measurements proved specific binding of [Ru(bpy-2Gal)_3] to TCF.
机译:我们已经开发了荧光钌金属糖簇作为一种强大的分子探针,用于通过荧光发射(FE)和荧光偏振(FP)分析来评估碳水化合物和凝集素之间的结合事件。荧光钌金属糖簇[Ru(bpy-2Gal)_3]和[Ru(bpy-2Glc)_3]在钌中心周围具有簇状的半乳糖和葡萄糖。通过添加每种凝集素(花生凝集素(PNA),蓖麻(Ricinus communis)凝集素120(RCA),伴刀豆球蛋白A(ConA)或小麦胚芽凝集素(WGA))或破伤风毒素c-片段( TCF)。加入PNA后,[Ru(bpy-2Gal)_3]的FE光谱显示出新的发射峰,[Ru(bpy-2Gal)_3]的FP值增加。类似地,[Ru(bpy-2Glc)_3]的FE光谱显示出新的发射峰,并且在添加ConA后FP值增加。由于金属糖簇和凝集素的其他组合几乎没有引起变化,因此通过FE和FP测量证明了半乳糖与PNA的特异性结合以及葡萄糖与ConA的特异性结合。从非线性最小二乘拟合,[Ru(bpy-2Gal)_3]与PNA的解离常数(K_d)为6.1μM,而[Ru(bpy)_2(bpy-2Gal)]与PNA的K_d值为ca。 10〜(-4)M。因此,已证明簇状碳水化合物可增加对凝集素的亲和力。此外,FP测量证明[Ru(bpy-2Gal)_3]与TCF具有特异性结合。

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