Gao Jinting, Liu Yaqing, Lin Xiaodong, Deng Jiankang, Yin Jinjin, Wang Shuo
Key Laboratory of Food Nutrition and Safety (Ministry of Education of China), College of Food Engineering and Biotechnology, Tianjin University of Science and Technology, Tianjin Economic and Technological Development Area, the 13th Avenue, No. 29, Tianjin, 300457, China.
Sci Rep. 2017 Oct 25;7(1):14014. doi: 10.1038/s41598-017-14416-7.
Wiring a series of simple logic gates to process complex data is significantly important and a large challenge for untraditional molecular computing systems. The programmable property of DNA endows its powerful application in molecular computing. In our investigation, it was found that DNA exhibits excellent peroxidase-like activity in a colorimetric system of TMB/HO/Hemin (TMB, 3,3', 5,5'-Tetramethylbenzidine) in the presence of K and Cu, which is significantly inhibited by the addition of an antioxidant. According to the modulated catalytic activity of this DNA-based catalyst, three cascade logic gates including AND-OR-INH (INHIBIT), AND-INH and OR-INH were successfully constructed. Interestingly, by only modulating the concentration of Cu, a majority logic gate with a single-vote veto function was realized following the same threshold value as that of the cascade logic gates. The strategy is quite straightforward and versatile and provides an instructive method for constructing multiple logic gates on a simple platform to implement complex molecular computing.
将一系列简单逻辑门连接起来以处理复杂数据对于非传统分子计算系统而言极为重要且是一项巨大挑战。DNA的可编程特性使其在分子计算中具有强大的应用潜力。在我们的研究中发现,在钾离子和铜离子存在的情况下,DNA在TMB/过氧化氢/血红素(TMB,3,3',5,5'-四甲基联苯胺)比色体系中表现出优异的过氧化物酶样活性,而加入抗氧化剂会显著抑制这种活性。基于这种基于DNA的催化剂的调制催化活性,成功构建了包括与或非(INHIBIT)、与非和或非在内的三个级联逻辑门。有趣的是,仅通过调节铜离子浓度,就实现了具有单票否决功能的多数逻辑门,其阈值与级联逻辑门相同。该策略简单通用,为在简单平台上构建多个逻辑门以实现复杂分子计算提供了一种指导性方法。