首页> 外文会议>International Conference on Unconventional Computation(UC 2005); 20051003-07; Sevilla(ES) >Structural DNA Nanotechnology: Molecular Construction and Computation
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Structural DNA Nanotechnology: Molecular Construction and Computation

机译:结构DNA纳米技术:分子构建与计算

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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纳米技术需要从分支的DNA分子构建物体,晶格和设备。分支的DNA分子为构建各种N连接的基序开辟了道路。这些基序可以通过内聚相互作用通过自底向上的纳米构造方法结合而产生更大的构造。这种方法产生的第一个对象是棒状多面体和拓扑目标,例如结和Borromean环。这些之后是具有可编程图案的周期性阵列。可以利用DNA结构转变和序列特异性结合来产生各种DNA纳米机械装置,包括双足步行器和模拟核糖体翻译能力的机器。这种方法的许多希望涉及使用DNA来支架其他材料,例如生物大分子,纳米电子元件和聚合物。这些系统旨在改善晶体学,计算能力以及生产各种奇特的材料。支链DNA可用于模拟Wang贴图,并可用于构造任意不规则图形并解决其可着色性。

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