paranemic crossover
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2020 ◽  
Vol 142 (14) ◽  
pp. 6814-6821 ◽  
Author(s):  
Arun Richard Chandrasekaran ◽  
Javier Vilcapoma ◽  
Paromita Dey ◽  
Siu Wah Wong-Deyrup ◽  
Bijan K. Dey ◽  
...  

2019 ◽  
Author(s):  
Arun Richard Chandrasekaran ◽  
Javier Vilcapoma ◽  
Paromita Dey ◽  
SiuWah Wong-Deyrup ◽  
Bijan K. Dey ◽  
...  

AbstractInherent nanometer-sized features and molecular recognition properties make DNA a useful material in constructing nanoscale objects, with alluring applications in biosensing and drug delivery. However, DNA can be easily degraded by nucleases present in biological fluids, posing a considerable roadblock to realizing the full potential of DNA nanotechnology for biomedical applications. Here we investigated the nuclease resistance and biostability of the multi-stranded motif called paranemic crossover (PX) DNA and discovered a remarkable and previously unreported resistance to nucleases. We show that PX DNA has more than an order of magnitude increased resistance to degradation by DNase I, serum, and urine compared to double stranded DNA. We further demonstrate that the degradation resistance decreases monotonically as DNA crossovers are removed from the structure, suggesting that frequent DNA crossovers disrupt either the binding or catalysis of nucleases or both. Further, we show using mouse and human cell lines that PX DNA does not affect cell proliferation or interfere with biological processes such as myogenesis. These results have important implications for building DNA nanostructures with enhanced biostability, either by adopting PX-based architectures or by carefully engineering crossovers. We contend that such crossover-dependent nuclease resistance could potentially be used to add “tunable biostability” to the many features of DNA nanotechnology.


Author(s):  
Xing Wang ◽  
Arun Richard Chandrasekaran ◽  
Zhiyong Shen ◽  
Yoel P. Ohayon ◽  
Tong Wang ◽  
...  
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2017 ◽  
Vol 15 (2) ◽  
pp. 465-469 ◽  
Author(s):  
Weili Shen ◽  
Qing Liu ◽  
Baoquan Ding ◽  
Changqing Zhu ◽  
Zhiyong Shen ◽  
...  

Overwound and underwound paranemic crossover (PX) DNA motifs have been self-assembled to generate high uniformity lattices, by adjusting the number of base pairs in the JX region adjacent to the PX structure to relieve torsional strain.


2016 ◽  
Vol 14 (30) ◽  
pp. 7187-7190 ◽  
Author(s):  
Weili Shen ◽  
Qing Liu ◽  
Baoquan Ding ◽  
Zhiyong Shen ◽  
Changqing Zhu ◽  
...  

The DNA paranemic crossover (PX) motif has been examined as building blocks for construction of DNA 2D arrays and the optimal design has been discovered.


2011 ◽  
Vol 101 (6) ◽  
pp. 1393-1402 ◽  
Author(s):  
Mogurampelly Santosh ◽  
Prabal K. Maiti

2006 ◽  
Vol 90 (5) ◽  
pp. 1463-1479 ◽  
Author(s):  
Prabal K. Maiti ◽  
Tod A. Pascal ◽  
Nagarajan Vaidehi ◽  
Jiyoung Heo ◽  
William A. Goddard

2004 ◽  
Vol 126 (6) ◽  
pp. 1666-1674 ◽  
Author(s):  
Zhiyong Shen ◽  
Hao Yan ◽  
Tong Wang ◽  
Nadrian C. Seeman
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