College of Food and Biological Engineering, Jiangsu University, Zhenjiang, 212013, P. R. China.
Anal Bioanal Chem. 2021 Nov;413(28):7073-7080. doi: 10.1007/s00216-021-03676-y. Epub 2021 Oct 9.
A versatile fluorescence scaffold was constructed by connecting a G-triplex sequence (G31) with G-rich DNA (aptamer of kanamycin) and using thioflavin T (ThT) as the fluorescent molecule. With the assistance of an aptamer, the G-quadruplex DNA structure was fabricated using G31 as three strands and the aptamer as the fourth strand. Due to the parallel planar morphology of the final products, which was favorable for ThT binding and which restricted the rotation of the aromatic rings of ThT, the fluorescence signal intensity of ThT was significantly enhanced. Because of the specific interaction of aptamer and kanamycin, in addition to the greater ability for kanamycin to bind with G-triplex than ThT, the conformation of G-quadruplex DNA was changed; in addition, ThT was dissociated from the aptamer-G31, and therefore a 'turn-on' to 'turn-off' detection principle was applied for kanamycin detection, which yielded reasonable sensitivity and selectivity. The detection range was 50-2000 nM, with a limit of detection of 1.05 nM. Our proposed method was thus successfully applied for kanamycin determination in pork, chicken, and beef samples, and satisfactory results were obtained.
一种多功能荧光支架通过连接 G-三链体序列(G31)与富含 G 的 DNA(卡那霉素适体)并用硫黄素 T(ThT)作为荧光分子来构建。在适体的辅助下,使用 G31 作为三条链和适体作为第四条链来制备 G-四链体 DNA 结构。由于最终产物的平行平面形态有利于 ThT 结合并限制了 ThT 芳环的旋转,因此 ThT 的荧光信号强度得到显著增强。由于适体和卡那霉素的特异性相互作用,除了卡那霉素与 G-三链体的结合能力大于 ThT 之外,G-四链体 DNA 的构象发生了变化;此外,ThT 从适体-G31 上解离,因此可以应用“开-关”检测原理来检测卡那霉素,从而实现了合理的灵敏度和选择性。检测范围为 50-2000 nM,检测限为 1.05 nM。因此,我们提出的方法成功地应用于猪肉、鸡肉和牛肉样品中的卡那霉素测定,并获得了令人满意的结果。