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首页> 外文期刊>The Journal of Chemical Physics >Insights into DNA-mediated interparticle interactions from a coarse-grained model
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Insights into DNA-mediated interparticle interactions from a coarse-grained model

机译:从粗粒度模型洞察DNA介导的粒子间相互作用

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摘要

DNA-functionalized particles have great potential for the design of complex self-assembled materials. The major hurdle in realizing crystal structures from DNA-functionalized particles is expected to be kinetic barriers that trap the system in metastable amorphous states. Therefore, it is vital to explore the molecular details of particle assembly processes in order to understand the underlying mechanisms. Molecular simulations based on coarse-grained models can provide a convenient route to explore these details. Most of the currently available coarse-grained models of DNA-functionalized particles ignore key chemical and structural details of DNA behavior. These models therefore are limited in scope for studying experimental phenomena. In this paper, we present a new coarse-grained model of DNA-functionalized particles which incorporates some of the desired features of DNA behavior. The coarse-grained DNA model used here provides explicit DNA representation (at the nucleotide level) and complementary interactions between Watson-Crick base pairs, which lead to the formation of single-stranded hairpin and double-stranded DNA. Aggregation between multiple complementary strands is also prevented in our model. We study interactions between two DNA-functionalized particles as a function of DNA grafting density, lengths of the hybridizing and non-hybridizing parts of DNA, and temperature. The calculated free energies as a function of pair distance between particles qualitatively resemble experimental measurements of DNA-mediated pair interactions. (C) 2014 AIP Publishing LLC.
机译:DNA功能化的颗粒在设计复杂的自组装材料方面具有巨大的潜力。从DNA官能化的粒子实现晶体结构的主要障碍预计是将系统陷于亚稳态非晶态的动力学屏障。因此,至关重要的是探索颗粒组装过程的分子细节,以了解其潜在机理。基于粗粒度模型的分子模拟可以提供探索这些细节的便捷途径。目前大多数可用的DNA功能化颗粒的粗粒度模型都忽略了DNA行为的关键化学和结构细节。因此,这些模型在研究实验现象的范围上受到限制。在本文中,我们提出了一种新的DNA功能化颗粒的粗粒度模型,其中包含了一些DNA行为的所需特征。此处使用的粗粒DNA模型提供了明确的DNA表示(在核苷酸水平上)以及Watson-Crick碱基对之间的互补相互作用,从而导致了单链发夹和双链DNA的形成。在我们的模型中,也防止了多个互补链之间的聚集。我们研究了两个DNA功能化颗粒之间的相互作用,这些相互作用是DNA嫁接密度,DNA杂交和非杂交部分的长度以及温度的函数。计算出的自由能与粒子之间的配对距离成函数关系,在质量上类似于DNA介导的配对相互作用的实验测量。 (C)2014 AIP Publishing LLC。

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