首页> 美国卫生研究院文献>Nucleic Acids Research >Thioflavin T binds dimeric parallel-stranded GA-containing non-G-quadruplex DNAs: a general approach to lighting up double-stranded scaffolds
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Thioflavin T binds dimeric parallel-stranded GA-containing non-G-quadruplex DNAs: a general approach to lighting up double-stranded scaffolds

机译:硫黄素T结合含二聚体的平行链含GA的非G-四链体DNA:点亮双链支架的一般方法

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摘要

A molecular rotor thioflavin T (ThT) is usually used as a fluorescent ligand specific for G-quadruplexes. Here, we demonstrate that ThT can tightly bind non-G-quadruplex DNAs with several GA motifs and dimerize them in a parallel double-stranded mode, accompanied by over 100-fold enhancement in the fluorescence emission of ThT. The introduction of reverse Watson–Crick T-A base pairs into these dimeric parallel-stranded DNA systems remarkably favors the binding of ThT into the pocket between G•G and A•A base pairs, where ThT is encapsulated thereby restricting its two rotary aromatic rings in the excited state. A similar mechanism is also demonstrated in antiparallel DNA duplexes where several motifs of two consecutive G•G wobble base pairs are incorporated and serve as the active pockets for ThT binding. The insight into the interactions of ThT with non-G-quadruplex DNAs allows us to introduce a new concept for constructing DNA-based sensors and devices. As proof-of-concept experiments, we design a DNA triplex containing GA motifs in its Hoogsteen hydrogen-bonded two parallel strands as a pH-driven nanoswitch and two GA-containing parallel duplexes as novel metal sensing platforms where C–C and T–T mismatches are included. This work may find further applications in biological systems (e.g. disease gene detection) where parallel duplex or triplex stretches are involved.
机译:分子转子硫黄素T(ThT)通常用作G-四链体特异性的荧光配体。在这里,我们证明ThT可以紧密结合具有几个GA图案的非G-四链体DNA,并以平行双链模式二聚化它们,并伴随ThT的荧光发射增强100倍以上。将反向Watson-Crick TA碱基对引入这些二聚体平行链DNA系统中,显着促进ThT结合到G•G和A•A碱基对之间的口袋中,其中ThT被封装从而限制了其两个旋转芳环。兴奋的状态。在反平行DNA双链体中也证实了类似的机制,其中结合了两个连续的G•G摆动碱基对的几个基序,并用作ThT结合的活性口袋。对ThT与非G-四链体DNA相互作用的深入了解,使我们能够引入构建基于DNA的传感器和设备的新概念。作为概念验证实验,我们设计了一个在Hoogsteen氢键结合的两条平行链中的带有GA基序的DNA三链体,作为pH驱动的纳米开关,将两条包含GA的平行双链体作为新型金属传感平台,其中C–C和T– T不匹配包括在内。这项工作可能会在涉及平行双链体或三链体延伸的生物系统中找到进一步的应用(例如疾病基因检测)。

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