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A well-directional three-dimensional DNA walking nanomachine that runs in an orderly manner

机译:一条定向的三维DNA行走纳米机以有序地运行

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Herein, we report a three-dimensional (3D) DNA walking nanomachine innovatively constructed from a functionalized 3D DNA track, which runs in an orderly manner with favorable directionality to allow for programming certain pathways of information transduction for some target tasks. The nanomachine was constructed using a departure station of walker (U ~(B) + W) and a functionalized 3D track, which was made up of a rolling circle amplification (RCA)-generated backbone chain and numerous triangular rung units with stators (U ~(A) + S) assembled into a repeating array along the backbone. A specific domain (SD) was designed at the 5′-end of the backbone to capture the U ~(B) + W, and stators with specific RNA substrates were immobilized at the three U ~(A) corners for the DNA walker to travel on. Powered by 10–23 DNAzyme, the DNA walker started moving from the SD end to the other end of the track by the autonomous cleavage of RNA substrates. Significantly, the homogeneous distribution of stators in the longitudinal and horizontal extensions paved a specific path for each walker to move along the 3D track. This resulted in random and inactive self-avoiding walking; thus, the nanomachine exhibited good executive ability. These properties allowed the DNA walking nanomachine to program the certain pathways of information transduction for the stepwise and programmed execution of some target tasks, such as the synthesis of specific polyorganics and cargo delivery. We believe that such a 3D DNA walking nanomachine could enrich the concept in the field of dynamic DNA nanotechnology, and may improve the development of novel DNA nanomachines in cargo delivery and composite product synthesis.
机译:在此,我们报告了一种由功能化的3D DNA轨道创新地构造的三维(3D)DNA行走纳米机,其以有序的方式以有利的方式运行,以允许为某些目标任务进行编程某些信息转换的通路。使用沃克(U〜(b)+ w)和功能化3D轨道的脱离站构建纳米载荷,该滚动圆形扩增(RCA)骨干链组成,与符号(U)的众多三角梯单元组成(U. 〜(a)+ s沿骨干组装成重复阵列。在骨干的5'端设计了特定结构域(SD)以捕获U〜(B)+ W,并且将具有特定RNA底物的定子固定在三个U〜(a)拐角处为DNA步行者旅行。通过10-23 dnazyme供电,DNA步行者开始通过RNA基材的自主切割从SD端移动到轨道的另一端。值得注意的是,纵向和水平延伸部的定子的均匀分布铺设了每个步行者的特定路径,以沿着3D轨道移动。这导致随机和非活动的自避免行走;因此,纳米机器表现出良好的行政能力。这些性质允许DNA行走纳米载荷对某些目标任务的逐步和编程执行的信息转导的某些路径进行编程,例如特定的聚集论和货物交付的合成。我们认为,这种3D DNA走路纳米机可以丰富动态DNA纳米技术领域的概念,并可改善货物递送和复合产品合成中新型DNA纳米梭胺的发育。

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