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Programming the Nucleation of DNA Brick Self-Assembly with a Seeding Strand

机译:用播种股编程DNA砖自组装成核

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Recently, the DNA brick strategy has provided a highly modular and scalable approach for the construction of complex structures, which can be used as nanoscale pegboards for the precise organization of molecules and nanoparticles for many applications. Despite the dramatic increase of structural complexity provided by the DNA brick method, the assembly pathways are still poorly understood. Herein, we introduce a "seed" strand to control the crucial nucleation and assembly pathway in DNA brick assembly. Through experimental studies and computer simulations, we successfully demonstrate that the regulation of the assembly pathways through seeded growth can accelerate the assembly kinetics and increase the optimal temperature by circa 4-7 degrees C for isothermal assembly. By improving our understanding of the assembly pathways, we provide new guidelines for the design of programmable pathways to improve the self-assembly of DNA nanostructures.
机译:最近,DNA砖战略提供了一种高度模块化和可扩展的方法,用于构建复杂结构,可用作许多应用的精确组织的纳米级Pegboards,用于许多应用。 尽管DNA砖法提供的结构复杂性急剧增加,但仍然仍然清晰地理解。 在此,我们介绍一种“种子”链,以控制DNA砖组件中的关键核酸和组装途径。 通过实验研究和计算机模拟,我们成功证明通过种子生长的组装途径的调节可以加速组装动力学,并通过大约4-7℃加速最佳温度来增加等温组件。 通过改善我们对大会途径的理解,我们为设计可编程途径的设计提供了新的准则,以改善DNA纳米结构的自组装。

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