论文标题

调整二维搭配DNA网络的拓扑

Tuning the Topology of a Two-Dimensional Catenated DNA Network

论文作者

Yadav, Indresh, Sulaiman, Dana Al, Doyle, Patrick S.

论文摘要

聚合物的分子拓扑在确定其物理特性中起关键作用。我们在此研究了对2D catenated DNA环的静态和动态特性的拓扑效应,称为动力学成形体。限制性酶,即在序列特异性位点上裂解DNA,用于选择性切割和去除网络中的环,因此调整分子拓扑结构,同时保持整体结构完整性。我们发现,拓扑对2D网络的空间扩展具有最小的影响,但是,这显着影响了放松行为。网络的形状波动由两个归因于网络的热波动和限制的两个不同的特征时间尺度控制。热弛豫的时间常数与各向异性波动的幅度之间的关系产生了普遍的缩放。有趣的是,这种缩放量独立于搭载网络中的环和/或穿孔的详细布置。这项研究提供了通过以合理且高度可控的方式修改潜在拓扑结构的2D catenated DNA网络的弹性特性的途径。

Molecular topology of polymers plays a key role in determining their physical properties. We studied herein the topological effects on the static and dynamic properties of a 2D catenated network of DNA rings called a kinetoplast. Restriction enzymes, that cleave DNA at sequence-specific sites, are used to selectively cut and remove rings from the network and hence tune the molecular topology while maintaining overall structural integrity. We find that topology has minimal effects over the spatial extension of the 2D network, however, it significantly affects the relaxation behavior. The shape fluctuations of the network are governed by two distinct characteristic time scales attributed to the thermal fluctuations and confinement of the network. The relationship between the time constant of thermal relaxation and the amplitude of anisotropy fluctuations yields a universal scaling. Interestingly, this scaling is independent of the detailed arrangements of rings and/or perforation within the catenated networks. This study provides a route to tune the elastic properties of 2D catenated DNA networks by modifying the underlying topology in a rational and highly controllable manner.

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