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首页> 外文期刊>Angewandte Chemie >DNA-Mediated Proximity-Based Assembly Circuit for Actuation of Biochemical Reactions
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DNA-Mediated Proximity-Based Assembly Circuit for Actuation of Biochemical Reactions

机译:DNA介导的基于近距离的组装电路,用于致动生化反应

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摘要

Smart nanodevices that integrate molecular recognition and signal production hold great promise for the point-of-care (POC) diagnostic applications. Herein, the development of a DNA-mediated proximity assembly of biochemical reactions, which was capable of sensing various bio-targets and reporting easy-to-read signals is reported. The circuit was composed of a DNA hairpin-locked catalytic cofactor with inhibited activity. Specific molecular inputs can trigger a conformational switch of the DNA locks through the mechanisms of toehold displacement and aptamer switching, exposing an active cofactor. The subsequent assembly of an enzyme/cofactor pair actuated a reaction to produce colorimetric or fluorescence signals for detecting target molecules. The developed system could be potentially applied to smart biosensing in molecular diagnostics and POC tests.
机译:集成分子识别和信号产生的智能纳米型纳米型纳米型纳米线对护理点(POC)诊断应用具有很大的承诺。 这里,报告了生物化学反应的DNA介导的邻近组装的发展,其能够感测各种生物靶标并报告易于读取的信号。 该电路由具有抑制活性的DNA发夹锁定的催化辅因子组成。 特定的分子输入可以通过令人脚趾位移和适体切换的机制来触发DNA锁的构象开关,暴露有源辅因子。 酶/辅因子对的随后组装致动反应以产生用于检测靶分子的比色或荧光信号。 开发系统可能潜在地应用于分子诊断和POC测试中的智能生物溶解。

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