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RNA 纳米管的原子结构及其与 DNA 纳米管的比较。

Atomic structures of RNA nanotubes and their comparison with DNA nanotubes.

机构信息

Center for Condensed Matter Theory, Department of Physics, Indian Institute of Science, Bangalore 560012, India.

出版信息

Nanoscale. 2019 Aug 8;11(31):14863-14878. doi: 10.1039/c9nr00786e.

Abstract

We present a computational framework to model RNA based nanostructures and study their microscopic structures. We model hexagonal nanotubes made of 6 dsRNA (RNTs) connected by double crossover (DX) at different positions. Using several hundred nano-second (ns) long all-atom molecular dynamics simulations, we study the atomic structure, conformational change and elastic properties of RNTs in the presence of explicit water and ions. Based on several structural quantities such as root mean square deviation (RMSD) and root mean square fluctuation (RMSF), we find that the RNTs are almost as stable as DNA nanotubes (DNTs). Although the central portion of the RNTs maintain its cylindrical shape, both the terminal regions open up to give rise to a gating like behavior which can play a crucial role in drug delivery. From the bending angle distribution, we observe that the RNTs are more flexible than DNTs. The calculated persistence length of the RNTs is in the micron range which is an order of magnitude higher than that of a single dsRNA. The stretch modulus of the RNTs from the contour length distribution is in the range of 4-7 nN depending on the sequence. The calculated persistence length and stretch modulus are in the same range of values as in the case of DNTs. To understand the structural properties of RNTs at the individual base-pair level we have also calculated all the helicoidal parameters and analyzed the relative flexibility and rigidity of RNTs having a different sequence. These findings emphasized the fascinating properties of RNTs which will expedite further theoretical and experimental studies in this field.

摘要

我们提出了一个计算框架来模拟基于 RNA 的纳米结构并研究它们的微观结构。我们模拟了由 6 个双链 RNA(RNTs)组成的六边形纳米管,这些 RNA 通过双交叉(DX)连接在不同的位置。通过数百个纳秒(ns)长的全原子分子动力学模拟,我们研究了在存在显式水和离子的情况下 RNTs 的原子结构、构象变化和弹性特性。基于均方根偏差(RMSD)和均方根波动(RMSF)等几个结构参数,我们发现 RNTs 几乎与 DNA 纳米管(DNTs)一样稳定。尽管 RNTs 的中心部分保持圆柱形,但两端都打开,形成类似于门控的行为,这在药物输送中可能起着至关重要的作用。从弯曲角度分布来看,我们观察到 RNTs 比 DNTs 更具柔韧性。RNTs 的计算持久长度在微米范围内,比单个双链 RNA 高一个数量级。从轮廓长度分布计算出的 RNTs 的拉伸模量在 4-7 nN 范围内,具体取决于序列。计算出的持久长度和拉伸模量与 DNTs 的值处于相同范围。为了了解 RNTs 在单个碱基对水平的结构特性,我们还计算了所有螺旋参数,并分析了具有不同序列的 RNTs 的相对柔韧性和刚性。这些发现强调了 RNTs 的迷人特性,这将加速该领域的进一步理论和实验研究。

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