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DNA walker 的作用机制、跟踪方法及应用:综述

Mechanisms, Methods of Tracking and Applications of DNA Walkers: A Review.

机构信息

Interdisciplinary Nanoscience Center (iNANO), Aarhus University, Gustav Wieds Vej 14, 8000, Aarhus, Denmark.

LIMES Chemical Biology Unit, Universität Bonn, Gerhard-Domagk-Straße 1, 53121, Bonn, Germany.

出版信息

Chemphyschem. 2020 Sep 2;21(17):1971-1988. doi: 10.1002/cphc.202000235. Epub 2020 Aug 18.

Abstract

In recent years, DNA nanotechnology expanded its scope from structural DNA nanoarchitecture towards designing dynamic and functional nanodevices. This progress has been evident in the development of an advanced class of DNA nanomachines, the so-called DNA walkers. They represent an evolution of basic switching between distinctly defined states into continuous motion. Inspired by the naturally occurring walkers such as kinesin, research on DNA walkers has focused on developing new ways of powering them and investigating their walking mechanisms and advantages. New techniques allowing the visualization of walkers as single molecules and in real time have provided a deeper insight into their behavior and performance. The construction of novel DNA walkers bears great potential for applications in therapeutics, nanorobotics or computation. This review will cover the various examples and breakthrough designs of recently reported DNA walkers that pushed the limits of their performance. It will also mention the techniques that have been used to investigate walker nanosystems, as well as discuss the applications that have been explored so far.

摘要

近年来,DNA 纳米技术的应用范围从结构 DNA 纳米架构扩展到设计动态和功能纳米器件。这一进展在先进的 DNA 纳米机器(所谓的 DNA 行走者)的发展中得到了体现。它们代表了从明显定义的状态之间的基本转换到连续运动的进化。受自然发生的行走者(如肌球蛋白)的启发,DNA 行走者的研究集中在开发为它们提供动力的新方法以及研究它们的行走机制和优势上。允许将行走者作为单个分子并实时可视化的新技术为深入了解它们的行为和性能提供了机会。新型 DNA 行走者的构建在治疗、纳米机器人或计算方面具有巨大的应用潜力。本综述将涵盖最近报道的 DNA 行走者的各种示例和突破性设计,这些设计推动了它们的性能极限。它还将提到用于研究行走者纳米系统的技术,并讨论迄今为止探索的应用。

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