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Robustness of Localized DNA Strand Displacement Cascades

机译:局部DNA链置换级联的稳健性

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Colocalization can strongly alter the kinetics and efficiency of chemical processes. For instance, in DNA-templated synthesis unfavorable reactions are sped up by placing reactants into close proximity onto a DNA scaffold. In biochemistry, clustering of enzymes has been demonstrated to enhance the reaction flux through some enzymatic cascades. Here we investigate the effect of colocalization on the performance of DNA strand displacement (DSD) reactions, an important class of reactions utilized in dynamic DNA nanotechnology. We study colocalization by immobilizing a two-stage DSD reaction cascade comprised of a “sender” and a “receiver” gate onto a DNA origami platform. The addition of a DNA (or RNA) input strand displaces a signal strand from the sender gate, which can then transfer to the receiver gate. The performance of the cascade is found to vary strongly with the distance between the gates. A cascade with an intermediate gate distance of ≈20 nm exhibits faster kinetics than those with larger distances, whereas a cascade with smaller distance is corrupted by excessive intraorigami leak reactions. The 20 nm cascade is found to be considerably more robust with respect to a competing reaction, and implementation of multiple receiver gates further increases this robustness. Our results indicate that for the 20 nm distance a fraction of signal strands is transferred locally to a receiver gate on the same platform, probably involving direct physical contact between the gates. The performance of the cascade is consistent with a simple model that takes “local” and “global” transfer processes into account.
机译:共定位可以极大地改变化学过程的动力学和效率。例如,在DNA模板合成中,通过将反应物紧邻DNA支架放置,可加快不利的反应。在生物化学中,已证明酶的聚集可通过某些酶促级联反应增强反应通量。在这里,我们研究了共定位对DNA链置换(DSD)反应性能的影响,DSD反应是动态DNA纳米技术中使用的重要一类反应。我们通过将由“发送者”和“接收者”门组成的两阶段DSD反应级联固定到DNA折纸平台上来研究共定位。 DNA(或RNA)输入链的添加取代了来自发送者门的信号链,然后可以将其转移到接收者门。发现级联的性能随门之间的距离而变化很大。栅距中间距离约为20 nm的级联比大距离的级联显示出更快的动力学,而距离较小的级联则由于过多的折纸内泄漏反应而被破坏。已发现20 nm级联相对于竞争反应具有更高的鲁棒性,并且多个接收器门的实现进一步提高了这种鲁棒性。我们的结果表明,对于20 nm的距离,一部分信号线局部传输到同一平台上的接收器门,这可能涉及门之间的直接物理接触。级联的性能与考虑“本地”和“全局”传输过程的简单模型一致。

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