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Methylene Blue as a G-Quadruplex Binding Probe for Label-Free Homogeneous Electrochemical Biosensing

机译:亚甲蓝作为G-四链体结合探针,用于无标记的均质电化学生物传感

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Herein, G-quadruplex sequence was found to significantly decrease the diffusion current of methylene blue (MB) in homogeneous solution for the first time. Electrochemical methods combined with circular dichroism spectroscopy and UV-vis spectroscopy were utilized to systematically explore the interaction between MB and an artificial G-quadruplex sequence, EAD2. The interaction of MB and EAD2 (the binding constant, K ≈ 1.3 × 10~6 M~(-1)) was stronger than that of MB and double-stranded DNA (dsDNA) (K ≈ 2.2 × 10~5 M~(-1)), and the binding stoichiometry (n) of EAD2/MB complex was calculated to be 1.0 according to the electrochemical titration curve combined with Scatchard analysis. MB was proved to stabilize the G-quadruplex structure of EAD2 and showed a competitive binding to G-quadruplex in the presence of hemin. EAD2 might mainly interact with MB, a positive ligand of G-quadruplex, through the end-stacking with π-system of the guanine quartet, which was quite different from the binding mechanism of dsDNA with MB by intercalation. A novel signal read-out mode based on the strong affinity between G-quadruplex and MB coupling with aptamer/G-quadruplex hairpin structure was successfully implemented in cocaine detection with high specificity. G-quadruplex/MB complex will function as a promising electrochemical indicator for constructing homogeneous label-free electrochemical biosensors, especially in the field of simple, rapid, and noninvasive biochemical assays.
机译:在本文中,首次发现G-四链体序列显着降低了亚甲基蓝(MB)在均匀溶液中的扩散电流。电化学方法结合圆二色谱和紫外可见光谱,系统地研究了MB与人工G四联体序列EAD2之间的相互作用。 MB与EAD2的相互作用(结合常数K≈1.3×10〜6 M〜(-1))比MB与双链DNA(dsDNA)的相互作用更强(K≈2.2×10〜5 M〜( -1)),根据电化学滴定曲线结合Scatchard分析,将EAD2 / MB配合物的结合化学计量比(n)计算为1.0。 MB被证明可以稳定EAD2的G-四链体结构,并在存在血红素的情况下显示出与G-四链体的竞争性结合。 EAD2可能主要通过鸟嘌呤四联体的π系统末端堆叠与G-四链体的阳性配体MB相互作用,这与dsDNA与MB通过插入的结合机制有很大不同。基于可卡因检测的高特异性,成功实现了一种基于G-四链体和MB结合适体/ G-四链体发夹结构的强亲和力的新型信号读出模式。 G-四链体/ MB复合体将作为一种有前途的电化学指示剂,用于构建均质的无标记电化学生物传感器,特别是在简单,快速和无创生物化学分析领域。

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