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首页> 外文期刊>Journal of biomolecular screening: The official journal of the Society for Biomolecular Screening >Novel approach to analyzing RNA aptamer-protein interactions: Toward further applications of aptamers
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Novel approach to analyzing RNA aptamer-protein interactions: Toward further applications of aptamers

机译:分析RNA适体-蛋白质相互作用的新方法:适体的进一步应用

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摘要

Surface plasmon-resonance analysis using a Biacore biosensor is a powerful tool for the detailed study of biomolecular interactions. The authors examined the methods of immobilizing proteins on the surface of NTA, SA, and CM5 sensor chips to study RNA aptamer-protein interactions. RNA aptamers and their deletion variants were loaded onto a protein-immobilized sensor chip, and their binding affinities were analyzed. Immobilizing the protein on a CM5 sensor chip via an anti-His-tag antibody was the only strategy that clearly detected the kinetic parameters of the interactions. Delta NEO-III-14U, one of the deletion variants of the NS3 aptamer, had the highest binding affinity for the Delta NS3 protein in this study (K-D = 4 x 10(-8)). Moreover, the 29-amino-acid spacer fragment was essential for protein immobilization using this strategy. This novel method will be useful in comparing the affinity of various RNA aptamers and selecting the most suitable candidates for a given target, as well as facilitating the in vitro selection procedure itself.
机译:使用Biacore生物传感器进行表面等离振子共振分析是用于详细研究生物分子相互作用的强大工具。作者研究了将蛋白质固定在NTA,SA和CM5传感器芯片表面的方法,以研究RNA适体与蛋白质的相互作用。将RNA适体及其缺失变体加载到蛋白质固定的传感器芯片上,并分析其结合亲和力。通过抗His-tag抗体将蛋白质固定在CM5传感器芯片上是唯一能够清楚检测相互作用动力学参数的策略。在本研究中,NS3适配体的缺失变体之一Delta NEO-III-14U对Delta NS3蛋白具有最高的结合亲和力(K-D = 4 x 10(-8))。此外,使用这种策略,29个氨基酸的间隔片段对于蛋白质固定至关重要。这种新方法将可用于比较各种RNA适体的亲和力,选择给定靶标的最合适候选物,以及促进体外选择程序本身。

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