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Mismatches Improve the Performance of Strand-Displacement Nucleic Acid Circuits

机译:不匹配可改善链置换核酸电路的性能

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摘要

Catalytic hairpin assembly (CHA) has previously proven useful as a transduction and amplification method for nucleic acid detection. However, the two hairpin substrates in a CHA circuit can potentially react non-specifically even in the absence of a single-stranded catalyst, and this non-specific background degrades the signal-to-noise ratio. The introduction of mismatched base pairs that impede uncatalyzed strand exchange reactions led to a significant decrease of the background signal, while only partially damping the signal in the presence of a catalyst. Various types and lengths of mismatches were assayed by fluorimetry, and in many instances, our MismatCHA designs yielded 100-fold increased signal-to-background ratios compared to a ratio of 4:1 with the perfectly matched substrates. These observations could be of general utility for the design of non-enzymatic nucleic acid circuits.
机译:先前已证明,催化发夹组件(CHA)可用作核酸检测的转导和扩增方法。然而,即使在不存在单链催化剂的情况下,CHA电路中的两个发夹式底物也可能会发生非特异性反应,并且这种非特异性背景会降低信噪比。阻碍未催化链交换反应的错配碱基对的引入导致背景信号显着降低,而在催化剂存在下仅部分衰减信号。各种类型和长度的错配都可以通过荧光法进行检测,在许多情况下,我们的MismatCHA设计产生的信噪比比完全匹配的底物的比例为4:1,提高了100倍。这些观察对于非酶核酸回路的设计可能是通用的。

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