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Attempted use of PACE for riboswitch discovery generates three new translational theophylline riboswitch side products

机译:尝试将PACE用于核糖开关发现可产生三种新的翻译茶碱核糖开关副产物

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摘要

ObjectiveThe purpose of this project was to use an in vivo method to discover riboswitches that are activated by new ligands. We employed phage-assisted continuous evolution (PACE) to evolve new riboswitches in vivo. We started with one translational riboswitch and one transcriptional riboswitch, both of which were activated by theophylline. We used xanthine as the new target ligand during positive selection followed by negative selection using theophylline. The goal was to generate very large M13 phage populations that contained unknown mutations, some of which would result in new aptamer specificity. We discovered side products of three new theophylline translational riboswitches with different levels of protein production.
机译:目的该项目的目的是使用体内方法发现被新配体激活的核糖开关。我们采用噬菌体辅助连续进化(PACE)在体内进化新的核糖开关。我们从一个翻译核糖开关和一个转录核糖开关开始,它们都被茶碱激活。在正选择之后,我们使用黄嘌呤作为新的靶配体,然后使用茶碱进行负选择。目的是产生包含未知突变的非常大的M13噬菌体种群,其中一些会导致新的适体特异性。我们发现了三种新的茶碱翻译核糖开关的副产物,它们具有不同的蛋白质生产水平。

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