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介晶弯曲核DNA纳米双链体的自组装。

Self-assembly of mesogenic bent-core DNA nanoduplexes.

作者信息

Nguyen Khanh Thuy, Battisti Anna, Ancora Daniele, Sciortino Francesco, De Michele Cristiano

机构信息

Dipartimento di Fisica, "Sapienza" Università di Roma, P.le A. Moro 2, 00185 Roma, Italy.

出版信息

Soft Matter. 2015 Apr 21;11(15):2934-44. doi: 10.1039/c4sm01571a.

Abstract

Short cylinder-like DNA duplexes, comprising 6 to 20 base pairs, self-assemble into semi-flexible chains, due to coaxial stacking interactions between their blunt ends. The mutual alignment of these chains gives rise to macroscopically orientationally ordered liquid crystal phases. Interestingly, experiments show that the isotropic-nematic phase boundary is sequence-dependent. We perform all-atom simulations of several sequences to gain insights into the structural properties of the duplex and correlate the resulting geometric properties with the observed location of the isotropic-nematic phase boundary. We identify in the duplex bending the key parameter for explaining the sequence dependence, suggesting that DNA duplexes can be assimilated to bent-core mesogens. We also develop a coarse-grained model for the different DNA duplexes to evaluate in detail how bending affects the persistence length and excluded volume of the aggregates. This information is fed into a recently developed formalism to predict the isotropic-nematic phase boundary for bent-core mesogens. The theoretical results agree with the experimental observations.

摘要

由6至20个碱基对组成的短圆柱状DNA双链体,由于其平端之间的同轴堆积相互作用,会自组装成半柔性链。这些链的相互排列产生了宏观上取向有序的液晶相。有趣的是,实验表明各向同性-向列相边界与序列有关。我们对几个序列进行了全原子模拟,以深入了解双链体的结构特性,并将所得的几何特性与各向同性-向列相边界的观测位置相关联。我们在双链体弯曲中确定了解释序列依赖性的关键参数,这表明DNA双链体可以被视为弯曲核液晶基元。我们还为不同的DNA双链体开发了一个粗粒度模型,以详细评估弯曲如何影响聚集体的持久长度和排除体积。这些信息被输入到最近开发的一种形式体系中,以预测弯曲核液晶基元的各向同性-向列相边界。理论结果与实验观测结果一致。

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