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Substrate-assisted 2D DNA lattices and algorithmic lattices from single-stranded tiles

机译:Substrate-assisted 2 d DNA晶格和算法格从单链瓷砖

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We present a simple route to circumvent kinetic traps which affect many types of DNA nanostructures in their self-assembly process. Using this method, a new 2D DNA lattice made up of short, single-stranded tile (SST) motifs was created. Previously, the growth of SST DNA assemblies was restricted to 1D (tubes and ribbons) or finite-sized 2D (molecular canvases). By utilizing the substrate-assisted growth method, sets of SSTs were designed as unit cells to self-assemble into periodic and aperiodic 2D lattices which continuously grow both along and orthogonal to the helical axis. Notably, large-scale (similar to 1 mu m(2)) fully periodic 2D lattices were fabricated using a minimum of just 2 strand species. Furthermore, the ability to create 2D lattices from a few motifs enables certain rules to be encoded into these SSTs to carry out algorithmic self-assembly. A set of these motifs was designed to execute simple 1-input 1-output COPY and NOT algorithms, the space-time manifestations which were aperiodic 2D algorithmic SST lattices. The methodology presented here can be straightforwardly applied to other motifs which fall into this type of kinetic trap to create novel DNA crystals.
机译:我们提出一个简单的路线绕过动能影响许多类型的DNA的陷阱纳米结构的自组装过程。使用这种方法,一个新的2 d DNA晶格组成短,单链瓷砖(SST)图案创建。组件1 d(管和限制丝带)或2 d(分子画布)——的尺寸。利用substrate-assisted增长方法,集太平洋被设计为单位的细胞自组装成周期和非周期2 d格不断发展,正交螺旋轴。大规模的(类似于1μm(2))完全周期使用最少的二维晶格是捏造的2链的物种。创建2 d从几个图案使晶格一定的规则编码到这些太平洋执行算法的自组装。这些图案是设计来执行简单1-input 1输出复制并不是算法,时空表现非周期2 d算法海温晶格。这里介绍可以直接应用属于这类型的其他主题动能陷阱来创建小说DNA晶体。

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