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Codeine-binding RNA aptamers and rapid determination of their binding constants using a direct coupling surface plasmon resonance assay

机译:可待因结合RNA适体,并使用直接偶联表面等离子体共振分析快速测定其结合常数

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摘要

RNA aptamers that bind the opium alkaloid codeine were generated using an iterative in vitro selection process. The binding properties of these aptamers, including equilibrium and kinetic rate constants, were determined through a rapid, high-throughput approach using surface plasmon resonance (SPR) analysis to measure real-time binding. The approach involves direct coupling of the target small molecule onto a sensor chip without utilization of a carrier protein. Two highest binding aptamer sequences, FC5 and FC45 with Kd values of 2.50 and 4.00 µM, respectively, were extensively studied. Corresponding mini-aptamers for FC5 and FC45 were subsequently identified through the described direct coupling Biacore assays. These assays were also employed to confirm the proposed secondary structures of the mini-aptamers. Both aptamers exhibit high specificity to codeine over morphine, which differs from codeine by a methyl group. Finally, the direct coupling method was demonstrated to eliminate potential non-specific interactions that may be associated with indirect coupling methods in which protein linkers are commonly employed. Therefore, in addition to presenting the first RNA aptamers to a subclass of benzylisoquinoline alkaloid molecules, this work highlights a method for characterizing small molecule aptamers that is more robust, precise, rapid and high-throughput than other commonly employed techniques.
机译:结合鸦片生物碱可待因的RNA适体是使用体外迭代选择过程生成的。这些适体的结合特性,包括平衡常数和动力学速率常数,是通过使用表面等离振子共振(SPR)分析来测量实时结合的快速,高通量方法确定的。该方法涉及将目标小分子直接偶联到传感器芯片上而不利用载体蛋白。广泛研究了Kd值分别为2.50和4.00 µM的两个最高结合适体序列FC5和FC45。随后通过所述的直接偶联Biacore测定法鉴定出对应的FC5和FC45的微型适体。这些测定法也被用于证实拟议的微型适体的二级结构。两种适体对可待因均具有比吗啡高的特异性,其与可待因的甲基不同。最后,证明了直接偶联方法消除了可能与通常使用蛋白质接头的间接偶联方法相关的潜在非特异性相互作用。因此,除了将第一个RNA适体呈现给苄基异喹啉生物碱分子的一个亚类之外,这项工作还突出了一种表征小分子适体的方法,该方法比其他常用技术更坚固,精确,快速且高通量。

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