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Structural DNA Nanotechnology: Molecular Construction and Computation

机译:结构DNA纳米技术:分子结构和计算

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Structural DNA nanotechnology entails the construction of objects, lattices and devices from branched DNA molecules. Branched DNA molecules open the way for the construction of a variety of N-connected motifs. These motifs can be joined by cohesive interactions to produce larger constructs in a bottom-up approach to nanoconstruction. The first objects produced by this approach were stick polyhedra and topological targets, such as knots and Borromean rings. These were followed by periodic arrays with programmable patterns. It is possible to exploit DNA structural transitions and sequence-specific binding to produce a variety of DNA nanomechanical devices, which include a bipedal walker and a machine that emulates the translational capabilities of the ribosome. Much of the promise of this methodology involves the use of DNA to scaffold other materials, such as biological macromolecules, nanoelectronic components, and polymers. These systems are designed to lead to improvements in crystallography, computation and the production of diverse and exotic materials. Branched DNA can be used to emulate Wang tiles, and it can be used to construct arbitrary irregular graphs and to address their colorability.
机译:结构DNA纳米技术需要的对象,格子和设备从支链的DNA分子的构建。分支DNA分子打开的各种的N-连接的基序的结构的方式。这些基序可通过粘合相互作用被接合在自底向上的方法来nanoconstruction产生较大的构建体。通过这种方法生产的第一批对象是棒多面体和拓扑的目标,如结和博罗梅安环。这些被随后用可编程图案周期性阵列。因此能够利用DNA结构转变和序列特异性结合产生多种DNA纳米机械器件,它包括一个两足步行器和一个模拟核糖体的翻译功能的机器的。许多这种方法的承诺的涉及使用DNA的脚手架的其它材料,如生物大分子,纳米电子部件,和聚合物。这些系统的设计导致在晶体学,计算和生产多样化及特殊材料的改进。支链DNA可用于模拟王瓷砖,它可以被用来构造任意不规则图形,并解决他们的着色。

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