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Dynamically Arranging Gold Nanoparticles on DNA Origami for Molecular Logic Gates

机译:在DNA折纸上动态排列金纳米颗粒用于分子逻辑门

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In molecular engineering, DNA molecules have been extensively studied owing to their capacity for accurate structural control and complex programmability. Recent studies have shown that the versatility and predictability of DNA origami make it an excellent platform for constructing nanodevices. In this study, we developed a strand-displacing strategy to selectively and dynamically release specific gold nanoparticles (AuNPs) on a rectangular DNA origami. A set of DNA logic gates ("OR", "AND", and "three-input majority gate") were established based on this strategy, in which computing results were identified by disassembly between the AuNPs and DNA origami. The computing results were detected using, experimental approaches such as gel electrophoresis and transmission electron microscopy (TEM). This method can be used to assemble more complex nanosystems and may have potential applications for molecular engineering.
机译:在分子工程中,由于DNA分子具有精确的结构控制能力和复杂的可编程性,因此已被广泛研究。最近的研究表明,DNA折纸的多功能性和可预测性使其成为构建纳米器件的绝佳平台。在这项研究中,我们开发了一种置换链的策略,以选择性地和动态地释放矩形DNA折纸上的特定金纳米颗粒(AuNPs)。基于此策略,建立了一组DNA逻辑门(“或”,“与”和“三输入多数门”),其中通过AuNP和DNA折纸之间的拆卸来识别计算结果。使用实验方法(如凝胶电泳和透射电子显微镜(TEM))检测计算结果。该方法可用于组装更复杂的纳米系统,并且在分子工程中可能具有潜在的应用。

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