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Enhancement of RecA-mediated self-assembly in DNA nanostructures through basepair mismatches and single-strand nicks

机译:通过碱基对错配和单链切口增强Reca介导的DNa纳米结构中的自组装

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摘要

The use of DNA as a structural material for nanometre-scale construction has grown extensively over the last decades. The development of more advanced DNA-based materials would benefit from a modular approach enabling the direct assembly of additional elements onto nanostructures after fabrication. RecA-based nucleoprotein filaments encapsulating short ssDNA have been demonstrated as a tool for highly efficient and fully programmable post-hoc patterning of duplex DNA scaffold. However, the underlying assembly process is not fully understood, in particular when patterning complex DNA topologies. Here, we report the effect of basepair-mismatched regions and single-strand nicks in the double-stranded DNA scaffold on the yield of RecA-based assembly. Significant increases in assembly yield are observed upon the introduction of unpaired basepairs directly adjacent to the assembly region. However, when the unpaired regions were introduced further from the assembly site the assembly yield initially decreased as the length of the unpaired region was increased. These results suggest that an unpaired region acts as a kinetic trap for RecA-based nucleoprotein filaments, impeding the assembly mechanism. Conversely, when the unpaired region is located directly adjacent to the assembly site, it leads to an increase in efficiency of RecA patterning owing to increased breathing of the assembly site.
机译:在过去的几十年中,DNA作为纳米级结构的结构材料的使用已广泛增长。更加先进的基于DNA的材料的开发将受益于模块化方法,该方法能够在制造后将其他元素直接组装到纳米结构上。封装短ssDNA的基于RecA的核蛋白丝已被证明是一种高效,完全可编程的双链DNA支架事后模式的工具。但是,底层组装过程尚不完全清楚,特别是在对复杂的DNA拓扑进行构图时。在这里,我们报告双链DNA支架中碱基对不匹配的区域和单链缺口对基于RecA的装配产量的影响。在引入直接邻近组装区的未配对碱基对时,观察到组装产量的显着增加。但是,当未配对区域从装配位点进一步引入时,随着未配对区域长度的增加,装配成品率开始下降。这些结果表明未配对的区域充当基于RecA的核蛋白细丝的动力学陷阱,从而阻碍了组装机制。相反,当未配对的区域直接位于装配位置附近时,由于装配位置的呼吸增加,导致RecA图案形成效率的提高。

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