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A novel strategy for selection of allosteric ribozymes yields RiboReporter™ sensors for caffeine and aspartame

机译:选择变构核酶的新策略可产生用于咖啡因和阿斯巴甜的RiboReporter™传感器

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摘要

We have utilized in vitro selection technology to develop allosteric ribozyme sensors that are specific for the small molecule analytes caffeine or aspartame. Caffeine- or aspartame-responsive ribozymes were converted into fluorescence-based RiboReporter™ sensor systems that were able to detect caffeine or aspartame in solution over a concentration range from 0.5 to 5 mM. With read-times as short as 5 min, these caffeine- or aspartame-dependent ribozymes function as highly specific and facile molecular sensors. Interestingly, successful isolation of allosteric ribozymes for the analytes described here was enabled by a novel selection strategy that incorporated elements of both modular design and activity-based selection methods typically used for generation of catalytic nucleic acids.
机译:我们已经利用体外选择技术开发了对小分子分析物咖啡因或阿斯巴甜特异的变构核酶传感器。将对咖啡因或阿斯巴甜敏感的核酶转换为基于荧光的RiboReporter™传感器系统,该系统能够检测浓度为0.5至5 mM的溶液中的咖啡因或阿斯巴甜。这些依赖咖啡因或阿斯巴甜的核酶的读取时间短至5分钟,可作为高度特异性和便捷的分子传感器。有趣的是,本文所述分析物的变构核酶成功分离是通过新颖的选择策略实现的,该策略结合了通常用于产生催化核酸的模块化设计和基于活性的选择方法的要素。

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