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基于弹性网络模型的DNA八面体的本征动力学分析

Intrinsic Dynamics Analysis of a DNA Octahedron by Elastic Network Model.

作者信息

Hu Guang, He Lei, Iacovelli Federico, Falconi Mattia

机构信息

Center for Systems Biology, Soochow University, Suzhou 215006, China.

Cambridge-Suda (CAM-SU) Genomic Resource Center, Soochow University, Suzhou 215123, China.

出版信息

Molecules. 2017 Jan 16;22(1):145. doi: 10.3390/molecules22010145.

Abstract

DNA is a fundamental component of living systems where it plays a crucial role at both functional and structural level. The programmable properties of DNA make it an interesting building block for the construction of nanostructures. However, molecular mechanisms for the arrangement of these well-defined DNA assemblies are not fully understood. In this paper, the intrinsic dynamics of a DNA octahedron has been investigated by using two types of Elastic Network Models (ENMs). The application of ENMs to DNA nanocages include the analysis of the intrinsic flexibilities of DNA double-helices and hinge sites through the calculation of the square fluctuations, as well as the intrinsic collective dynamics in terms of cross-collective map calculation coupled with global motions analysis. The dynamics profiles derived from ENMs have then been evaluated and compared with previous classical molecular dynamics simulation trajectories. The results presented here revealed that ENMs can provide useful insights into the intrinsic dynamics of large DNA nanocages and represent a useful tool in the field of structural DNA nanotechnology.

摘要

DNA是生命系统的基本组成部分,在功能和结构层面都发挥着关键作用。DNA的可编程特性使其成为构建纳米结构的有趣构建单元。然而,这些定义明确的DNA组装体的排列分子机制尚未完全了解。在本文中,通过使用两种类型的弹性网络模型(ENM)研究了DNA八面体的内在动力学。ENM在DNA纳米笼中的应用包括通过计算平方波动来分析DNA双螺旋和铰链位点的内在柔韧性,以及通过交叉集体图计算结合全局运动分析来分析内在集体动力学。然后对源自ENM的动力学概况进行了评估,并与先前的经典分子动力学模拟轨迹进行了比较。此处呈现的结果表明,ENM可以为大型DNA纳米笼的内在动力学提供有用的见解,并代表了结构DNA纳米技术领域的一种有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7a1/6155889/80c181e50271/molecules-22-00145-g001.jpg

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