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DNA 计算:光控与门。

DNA computation: a photochemically controlled AND gate.

机构信息

Department of Chemistry, North Carolina State University, Raleigh, North Carolina 27695-8204, USA.

出版信息

J Am Chem Soc. 2012 Feb 29;134(8):3810-5. doi: 10.1021/ja210050s. Epub 2012 Feb 16.

Abstract

DNA computation is an emerging field that enables the assembly of complex circuits based on defined DNA logic gates. DNA-based logic gates have previously been operated through purely chemical means, controlling logic operations through DNA strands or other biomolecules. Although gates can operate through this manner, it limits temporal and spatial control of DNA-based logic operations. A photochemically controlled AND gate was developed through the incorporation of caged thymidine nucleotides into a DNA-based logic gate. By using light as the logic inputs, both spatial control and temporal control were achieved. In addition, design rules for light-regulated DNA logic gates were derived. A step-response, which can be found in a controller, was demonstrated. Photochemical inputs close the gap between DNA computation and silicon-based electrical circuitry, since light waves can be directly converted into electrical output signals and vice versa. This connection is important for the further development of an interface between DNA logic gates and electronic devices, enabling the connection of biological systems with electrical circuits.

摘要

DNA 计算是一个新兴领域,它能够基于定义的 DNA 逻辑门组装复杂的电路。以前,基于 DNA 的逻辑门是通过纯粹的化学手段操作的,通过 DNA 链或其他生物分子来控制逻辑操作。虽然门可以通过这种方式操作,但它限制了基于 DNA 的逻辑操作的时空控制。通过将笼状胸苷核苷酸引入基于 DNA 的逻辑门,开发了光控与门。通过使用光作为逻辑输入,实现了空间控制和时间控制。此外,还得出了用于光控 DNA 逻辑门的设计规则。演示了可以在控制器中找到的阶跃响应。光化学输入缩小了 DNA 计算和基于硅的电子电路之间的差距,因为光波可以直接转换为电输出信号,反之亦然。这种连接对于 DNA 逻辑门和电子设备之间接口的进一步发展很重要,它使生物系统与电路的连接成为可能。

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