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首页> 外文期刊>Nucleic Acids Research >Thermal cycling of DNA devices via associative strand displacement
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Thermal cycling of DNA devices via associative strand displacement

机译:通过关联链位移热循环DNA器件

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摘要

DNA-based devices often operate through a series of toehold-mediated strand-displacement reactions. To achieve cycling, fluidic mixing can be used to introduce 'recovery' strands to reset the system. However, such mixing can be cumbersome, non-robust, and wasteful of materials. Here we demonstrate mixing-free thermal cycling of DNA devices that operate through associative strand-displacement cascades. These cascades are favored at low temperatures due to the primacy of a net increase in base pairing, whereas rebinding of 'recovery' strands is favored at higher temperatures due to the primacy of a net release of strands. The temperature responses of the devices could be modulated by adjustment of design parameters such as the net increase of base pairs and the concentrations of strands. Degradation of function was not observable even after 500 thermal cycles. We experimentally demonstrated simple digital-logic circuits that evaluate at 35 degrees C and reset after transient heating to 65 degrees C. Thus associative strand displacement enables robust thermal cycling of DNA-based devices in a closed system.
机译:基于DNA的设备通常通过一系列令人扭矩介导的链位移反应操作。为了实现循环,可以使用流体混合来引入“恢复”链以重置系统。然而,这种混合可以是麻烦的,不稳健,浪费的材料。在这里,我们证明了通过关联股线级联操作的DNA装置的无混合热循环。由于碱基配对的净增加,这些级联在低温下受到青睐,而“恢复”链的折衷是在较高温度下青睐,因为股线的净释放的首要地位。可以通过调节设计参数来调节装置的温度响应,例如碱基对的净增加和股线的浓度。即使在500次热循环之后,函数的降解也不观察到。我们通过实验证明了简单的数字逻辑电路,可在35摄氏度下评估,并在瞬态加热至65摄氏度之后复位。因此,关联链位移使得能够在封闭系统中的基于DNA的装置的鲁棒热循环。

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