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Multi-scale coarse-graining for the study of assembly pathways in DNA-brick self-assembly

机译:DNA砖自动组装组装途径研究的多尺度粗晶

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Inspired by recent successes using single-stranded DNA tiles to produce complex structures, we develop a two-step coarse-graining approach that uses detailed thermodynamic calculations with oxDNA, a nucleotide-based model of DNA, to parametrize a coarser kinetic model that can reach the time and length scales needed to study the assembly mechanisms of these structures. We test the model by performing a detailed study of the assembly pathways for a two-dimensional target structure made up of 334 unique strands each of which are 42 nucleotides long. Without adjustable parameters, the model reproduces a critical temperature for the formation of the assembly that is close to the temperature at which assembly first occurs in experiments. Furthermore, the model allows us to investigate in detail the nucleation barriers and the distribution of critical nucleus shapes for the assembly of a single target structure. The assembly intermediates are compact and highly connected (although not maximally so), and classical nucleation theory provides a good fit to the height and shape of the nucleation barrier at temperatures close to where assembly first occurs. Published by AIP Publishing.
机译:通过最近使用单链DNA瓦片的成功来产生复杂结构的启发,我们开发了一种两步的粗晶体方法,它使用氧化NA的核苷酸基础核苷酸的氧化物的氧化物的热力学计算来参加较大的动力学模型研究这些结构的装配机制所需的时间和长度尺度。我们通过对由334个独特的股线组成的二维目标结构进行组装途径的详细研究来测试模型,每种核苷酸长度为42个核苷酸。在没有可调节参数的情况下,该模型再现临界温度,用于形成靠近在实验中首先发生组件的温度的组件。此外,该模型允许我们详细研究成核屏障和临界核形状的分布,用于组装单个目标结构。组装中间体紧凑且高度连接(虽然不最大限度地),并且经典的成核理论提供了良好的拟合在靠近发生组件的温度下的核心屏障的高度和形状。通过AIP发布发布。

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