Tokyo University of Technology, Graduate School of Bionics, Katakura, Hachioji, Tokyo, Japan.
J Biomed Opt. 2011 Mar;16(3):037001. doi: 10.1117/1.3558727.
We develop a fluorescent ruthenium metalloglycocluster for use as a powerful molecular probe in evaluating the binding between carbohydrates and lectins by fluorescence emission (FE) and fluorescence polarization (FP) analyses. Changes in the FE and FP of these metalloglycoclusters are measured following the addition of lectin [peanut agglutinin (PNA), Ricinus communis agglutinin 120, Concanavalin A (ConA), or wheat germ agglutinin] or tetanus toxin c-fragment (TCF). After the addition of PNA, the FE spectrum of [Ru(bpy-2Gal)(3)] shows a new emission peak and the FP value of [Ru(bpy-2Gal)(3)] increases. Similarly, the FE spectrum of [Ru(bpy-2Glc)(3)] shows a new emission peak and the FP value increases on addition of ConA. Because other combinations of metalloglycoclusters and lectins show little change, specific binding of galactose to PNA and that of glucose to ConA are confirmed by the FE and FP measurements. Resulting dissociation constants (K(d)) prove that the metalloglycoclusters with highly clustered carbohydrates show higher affinity for the respective lectins than those with less clustered carbohydrates. Furthermore, specific binding of [Ru(bpy-2Gal)(3)] to TCF was confirmed by the FP measurement.
我们开发了一种荧光钌金属糖络合物,可用于通过荧光发射(FE)和荧光偏振(FP)分析来评估碳水化合物与凝集素之间的结合。在加入凝集素[花生凝集素(PNA)、蓖麻凝集素 120、伴刀豆球蛋白 A(ConA)或麦胚凝集素]或破伤风毒素 C 片段(TCF)后,测量这些金属糖络合物的 FE 和 FP 变化。加入 PNA 后,[Ru(bpy-2Gal)(3)]的 FE 光谱显示新的发射峰,[Ru(bpy-2Gal)(3)]的 FP 值增加。同样,加入 ConA 后,[Ru(bpy-2Glc)(3)]的 FE 光谱显示新的发射峰,FP 值增加。由于其他金属糖络合物和凝集素的组合变化不大,通过 FE 和 FP 测量证实了半乳糖与 PNA 的特异性结合以及葡萄糖与 ConA 的特异性结合。由此得出的解离常数(Kd)证明,具有高度聚集碳水化合物的金属糖络合物与各自的凝集素有更高的亲和力,而具有较少聚集碳水化合物的金属糖络合物则没有。此外,通过 FP 测量证实了[Ru(bpy-2Gal)(3)]与 TCF 的特异性结合。