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基于固定化DNA逻辑门的模块化多级电路。

Modular multi-level circuits from immobilized DNA-based logic gates.

作者信息

Frezza Brian M, Cockroft Scott L, Ghadiri M Reza

机构信息

Department of Chemistry, Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 North Torrey Pines Rd, La Jolla, California 92037, USA.

出版信息

J Am Chem Soc. 2007 Dec 5;129(48):14875-9. doi: 10.1021/ja0710149. Epub 2007 Nov 10.

Abstract

One of the fundamental goals of molecular computing is to reproduce the tenets of digital logic, such as component modularity and hierarchical circuit design. An important step toward this goal is the creation of molecular logic gates that can be rationally wired into multi-level circuits. Here we report the design and functional characterization of a complete set of modular DNA-based Boolean logic gates (AND, OR, and AND-NOT) and further demonstrate their wiring into a three-level circuit that exhibits Boolean XOR (exclusive OR) function. The approach is based on solid-supported DNA logic gates that are designed to operate with single-stranded DNA inputs and outputs. Since the solution-phase serves as the communication medium between gates, circuit wiring can be achieved by designating the DNA output of one gate as the input to another. Solid-supported logic gates provide enhanced gate modularity versus solution-phase systems by significantly simplifying the task of choosing appropriate DNA input and output sequences used in the construction of multi-level circuits. The molecular logic gates and circuits reported here were characterized by coupling DNA outputs to a single-input REPORT gate and monitoring the resulting fluorescent output signals.

摘要

分子计算的一个基本目标是重现数字逻辑的原理,如组件模块化和分层电路设计。朝着这个目标迈出的重要一步是创建能够合理连接成多级电路的分子逻辑门。在此,我们报告了一套完整的基于DNA的模块化布尔逻辑门(与门、或门和与非门)的设计和功能表征,并进一步展示了它们连接成具有布尔异或功能的三级电路。该方法基于固相支持的DNA逻辑门,其设计用于单链DNA输入和输出操作。由于溶液相充当门之间的通信介质,通过将一个门的DNA输出指定为另一个门的输入,可以实现电路布线。与溶液相系统相比,固相支持的逻辑门通过显著简化构建多级电路时选择合适的DNA输入和输出序列的任务,提供了增强的门模块化。这里报道的分子逻辑门和电路通过将DNA输出耦合到单输入报告门并监测产生的荧光输出信号来进行表征。

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