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Designing logic gates based on 3-way DNAzyme complex

机译:基于3型DNAzyme综合体的设计逻辑门

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In recent years, DNA has been regarded as a reliable raw material for building biological computers and biochips due to its nanoscale size, ultralow energy consumption, and high-performance computing potential. As the basis of building a biological computer, the research on the construction of nanoscale logic arithmetic and nanoscale biochemical logic circuits based on DNA molecules as carriers has attracted increasing attention. Although researchers use DNA strand replacement systems to achieve it this requires adjustment and careful design of the toehold, making sequence selection more difficult. To reduce dependence on the toehold, we propose a 3-way DNAzyme complex composed of three E6 DNAzymes assembled using the biological characteristics of E6 DNAzyme. This complex enriched the recognition vector of E6 DNAzyme, which can be used for multiple substrates, thus improving the reusability and efficiency of DNA molecules. At the same time, based on the 3-way DNAzyme complex and without the involvement of the toehold, we designed logic gates such as the OR gate, the AND gate, and the INHIBIT gate, and realized the construction of a new half subtractor and nanoscale biochemical logic circuit. These explorations and attempts extended the practicality of the 3-way DNAzyme complex. We believe that these logic elements will have a wide range of applications in DNA nanoscale programming, biological computing, and nanoscale medicine.
机译:近年来,DNA由于其纳米级尺寸,超级能耗和高性能计算潜力而被视为建造生物计算机和生物芯片的可靠原料。作为构建生物计算机的基础,基于DNA分子作为载体的纳米级逻辑算术和纳米级生化逻辑电路的构建研究引起了越来越多的关注。虽然研究人员使用DNA Strand替代系统来实现这一点需要调整和仔细设计令人脚跟,使序列选择更加困难。为了减少对脚趾的依赖性,我们提出了一种三元的DNAzyme络合物,其由使用E6DNAzyme的生物学特性组装的三种E6DNAzymes组成。该复合物富集E6DNAzyme的识别载体,其可用于多个基材,从而提高DNA分子的可重用性和效率。同时,基于三元的DNAzyme复合物和没有脚趾的参与,我们设计了逻辑门,例如或栅极,门,闸门和禁止门,并实现了新的半减法器的构造纳米级生物化学逻辑电路。这些探索和企图延长了三元二氮杂体复合物的实用性。我们认为,这些逻辑元素将在DNA纳米级编程,生物计算和纳米级医学中具有广泛的应用。

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