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首页> 外文期刊>Nucleic Acids Research >Quantitative design and experimental validation for a single-molecule DNA nanodevice transformable among three structural states
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Quantitative design and experimental validation for a single-molecule DNA nanodevice transformable among three structural states

机译:可在三种结构状态之间转换的单分子DNA纳米器件的定量设计和实验验证

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摘要

In this work, we report the development and experimental validation of a coupled statistical thermodynamic model allowing prediction of the structural transitions executed by a novel DNA nanodevice, for quantitative operational design. The efficiency of target structure formation by this nanodevice, implemented with a bistable DNA molecule designed to transform between three distinct structures, is modeled by coupling the isolated equilibrium models for the individual structures. A peculiar behavior is predicted for this nanodevice, which forms the target structure within a limited temperature range by sensing thermal variations. The predicted thermal response is then validated via fluorescence measurements to quantitatively assess whether the nanodevice performs as designed. Agreement between predictions and experiment was substantial, with a 0.95 correlation for overall curve shape over a wide temperature range, from 30 http://www.w3.org/1999C. The obtained accuracy, which is comparable to that of conventional melting behavior prediction for DNA duplexes in isolation, ensures the applicability of the coupled model for illustrating general DNA reaction systems involving competitive duplex formation. Finally, tuning of the nanodevice using the current model towards design of a thermal band pass filter to control chemical circuits, as a novel function of DNA nanodevices is proposed.
机译:在这项工作中,我们报告了耦合统计热力学模型的开发和实验验证,该模型可以预测由新型DNA纳米器件执行的结构转变,以进行定量操作设计。通过耦合用于各个结构的孤立平衡模型,可以模拟由设计为在三个不同结构之间转换的双稳态DNA分子实现的纳米设备形成靶结构的效率。预测了这种纳米器件的特殊行为,该纳米器件通过感测热变化在有限的温度范围内形成目标结构。然后通过荧光测量验证预测的热响应,以定量评估纳米器件是否按设计执行。预测与实验之间的一致性非常高,从30 http://www.w3.org/1999C开始,在较宽的温度范围内,总体曲线形状具有0.95的相关性。所获得的准确度可与传统的DNA双链体在分离中的熔解行为预测相媲美,从而确保了偶联模型可用于说明涉及竞争性双链体形成的一般DNA反应系统。最后,提出了使用当前模型对纳米器件进行调谐以设计热带通滤波器以控制化学电路的方法,这是DNA纳米器件的一种新颖功能。

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