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带正电荷的纳米颗粒沿着长 DNA 分子上的柔性梯度的定向滚动。

Directional rolling of positively charged nanoparticles along a flexibility gradient on long DNA molecules.

机构信息

Department of Chemistry and Nanoscience, Ewha Womans University, Seoul 03760, Republic of Korea.

出版信息

Soft Matter. 2018 Jan 31;14(5):817-825. doi: 10.1039/c7sm02016c.

DOI:10.1039/c7sm02016c
PMID:29308503
Abstract

Directing the motion of molecules/colloids in any specific direction is of great interest in many applications of chemistry, physics, and biological sciences, where regulated positioning or transportation of materials is highly desired. Using Brownian dynamics simulations of coarse-grained models of a long, double-stranded DNA molecule and positively charged nanoparticles, we observed that the motion of a single nanoparticle bound to and wrapped by the DNA molecule can be directed along a gradient of DNA local flexibility. The flexibility gradient is constructed along a 0.8 kilobase-pair DNA molecule such that local persistence length decreases gradually from 50 nm to 40 nm, mimicking a gradual change in sequence-dependent flexibility. Nanoparticles roll over a long DNA molecule from less flexible regions towards more flexible ones as a result of the decreasing energetic cost of DNA bending and wrapping. In addition, the rolling becomes slightly accelerated as the positive charge of nanoparticles decreases due to a lower free energy barrier of DNA detachment from charged nanoparticle for processive rolling. This study suggests that the variation in DNA local flexibility can be utilized in constructing and manipulating supramolecular assemblies of DNA molecules and nanoparticles in structural DNA nanotechnology.

摘要

在化学、物理和生物科学的许多应用中,将分子/胶体定向到任何特定方向都具有重要意义,因为在这些应用中,人们非常希望对材料进行受控的定位或输送。通过对长双链 DNA 分子和带正电荷纳米颗粒的粗粒模型进行布朗动力学模拟,我们观察到,与 DNA 分子结合并包裹的单个纳米颗粒的运动可以沿着 DNA 局部柔性的梯度进行定向。该柔性梯度是沿着 0.8 千碱基对的 DNA 分子构建的,使得局部持久长度从 50nm 逐渐减小到 40nm,模拟了序列依赖性柔性的逐渐变化。纳米颗粒从较不灵活的区域滚向较灵活的区域,因为 DNA 弯曲和包裹的能量成本降低。此外,由于从带正电荷的纳米颗粒上脱离 DNA 的自由能势垒较低,对于连续滚动,纳米颗粒的正电荷减少会略微加速滚动过程。这项研究表明,在结构 DNA 纳米技术中,DNA 局部柔性的变化可用于构建和操纵 DNA 分子和纳米颗粒的超分子组装体。

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In silico construction of a flexibility-based DNA Brownian ratchet for directional nanoparticle delivery.
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