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Thrombin-Binding Aptamer Quadruplex Formation: AFM and Voltammetric Characterization

机译:凝血酶结合的适体四链体形成:AFM和伏安法表征。

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摘要

The adsorption and the redox behaviour of thrombin-binding aptamer (TBA) and extended TBA (eTBA) were studied using atomic force microscopy and voltammetry at highly oriented pyrolytic graphite and glassy carbon. The different adsorption patterns and degree of surface coverage were correlated with the sequence base composition, presence/absence of K+, and voltammetric behaviour of TBA and eTBA. In the presence of K+, only a few single-stranded sequences present adsorption, while the majority of the molecules forms stable and rigid quadruplexes with no adsorption. Both TBA and eTBA are oxidized and the only anodic peak corresponds to guanine oxidation. Upon addition of K+ ions, TBA and eTBA fold into a quadruplex, causing the decrease of guanine oxidation peak and occurrence of a new peak at a higher potential due to the oxidation of G-quartets. The higher oxidation potential of G-quartets is due to the greater difficulty of electron transfer from the inside of the quadruplex to the electrode surface than electron transfer from the more flexible single strands.
机译:使用原子力显微镜和伏安法研究了凝血酶结合适体(TBA)和扩展TBA(eTBA)在高度取向的热解石墨和玻璃碳上的吸附和氧化还原行为。不同的吸附方式和表面覆盖程度与序列碱基组成,K + 的存在与否以及TBA和eTBA的伏安行为有关。在存在K + 的情况下,只有少数单链序列具有吸附作用,而大多数分子形成没有吸附的稳定且刚性的四链体。 TBA和eTBA均被氧化,唯一的阳极峰对应于鸟嘌呤氧化。添加K + 离子后,TBA和eTBA折叠成四链体,导致鸟嘌呤氧化峰的减少,并由于G四联体的氧化而在较高电势处出现新的峰。 G四元组的较高氧化电位是由于电子从四链体内部传递到电极表面的难度大于电子从更柔韧的单链传递的难度。

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