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Kinetics of DNA Strand Displacement Systems with Locked Nucleic Acids

机译:具有锁定核酸的DNA链位移系统的动力学

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摘要

Locked nucleic acids (LNAs) are conformationally restricted RNA nucleotides. Their increased thermal stability and selectivity toward their complements make them well-suited for diagnostic and therapeutic applications. Although the structural and thermodynamic properties of LNA–LNA, LNA–RNA, and LNA–DNA hybridizations are known, the kinetic effects of incorporating LNA nucleotides into DNA strand displacement systems are not. Here, we thoroughly studied the strand displacement kinetics as a function of the number and position of LNA nucleotides in DNA oligonucleotides. When compared to that of an all-DNA control, with an identical sequence, the leakage rate constant was reduced more than 50-fold, to an undetectable level, and the invasion rate was preserved for a hybrid DNA/LNA system. The total performance enhancement ratio also increased more than 70-fold when calculating the ratio of the invading rate to the leakage rate constants for a hybrid system. The rational substitution of LNA nucleotides for DNA nucleotides preserves sequence space while improving the signal-to-noise ratio of strand displacement systems. Hybrid DNA/LNA systems offer great potential for high-performance chemical reaction networks that include catalyzed hairpin assemblies, hairpin chain reactions, motors, walkers, and seesaw gates.
机译:锁定的核酸(LNA)是构象限制的RNA核苷酸。它们增加的热稳定性和对其补充的选择性使它们适合于诊断和治疗应用。尽管已知LNA-LNA,LNA-RNA和LNA-DNA杂交的结构和热力学性质,但是将LNA核苷酸掺入DNA链位移系统的动力学效应不是。这里,我们将链位移动力学彻底研究了DNA寡核苷酸中LNA核苷酸的数量和位置的函数。与All-DNA对照的相比,具有相同的序列,泄漏速率常数将大于50倍,未检测到的水平降低,并且保留了杂交DNA / LNA系统的侵袭率。在计算混合系统的泄漏率常数的侵入率常数的比率计算时,总性能增强比也增加了70多倍。 DNA核苷酸的LNA核苷酸的理性取代保留序列空间,同时提高链位移系统的信噪比。杂交DNA / LNNA系统为高性能化学反应网络提供了巨大的潜力,包括催化的发夹组件,发夹链反应,电动机,步行者和跷跷板盖茨。

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