首页> 外文期刊>Journal of the American Chemical Society >Exceptional Nuclease Resistance of Paranemic Crossover (PX) DNA and Crossover-Dependent Biostability of DNA Motifs
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Exceptional Nuclease Resistance of Paranemic Crossover (PX) DNA and Crossover-Dependent Biostability of DNA Motifs

机译:副交汇点(PX)DNA的出色的核酸酶抗性和交汇点依赖性的DNA图案生物稳定性。

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摘要

Nanometer-sized features and molecular recognition properties make DNA a useful material for nanoscale construction, but degradation in biological fluids poses a considerable roadblock to biomedical applications of DNA nanotechnology. Here, we report the remarkable biostability of a multistranded motif called paranemic crossover (PX) DNA. Compared to double stranded DNA, PX DNA has dramatically enhanced (sometimes >1000 fold) resistance to degradation by four different nucleases, bovine and human serum, and human urine. We trace the cause of PX's biostability to DNA crossovers, showing a continuum of protection that scales with the number of crossovers. These results suggest that enhanced biostability can be engineered into DNA nanostructures by adopting PX-based architectures or by strategic crossover placement.
机译:纳米级的特征和分子识别特性使DNA成为用于纳米级构建的有用材料,但是生物流体中的降解为DNA纳米技术的生物医学应用构成了相当大的障碍。在这里,我们报告了称为副反应交叉(PX)DNA的多链基元的非凡的生物稳定性。与双链DNA相比,PX DNA对四种不同的核酸酶,牛和人血清以及人尿液的降解具有显着增强的抗性(有时> 1000倍)。我们将PX的生物稳定性归因于DNA交换,显示出保护的连续性随交换数的增加而扩展。这些结果表明,通过采用基于PX的体系结构或通过策略性的交叉放置,可以将增强的生物稳定性工程化为DNA纳米结构。

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