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利用DNA连接酶在高温下将二级结构寡核苷酸环化形成单链环。

Cyclization of secondarily structured oligonucleotides to single-stranded rings by using DNA ligase at high temperatures.

作者信息

Cui Yixiao, Han Xutiange, An Ran, Zhou Guangqing, Komiyama Makoto, Liang Xingguo

机构信息

College of Food Science and Engineering, Ocean University of China Qingdao 266003 China

Laboratory for Marine Drugs and Bioproducts, Qingdao National Laboratory for Marine Science and Technology Qingdao 266003 China.

出版信息

RSC Adv. 2018 May 23;8(34):18972-18979. doi: 10.1039/c8ra02804d. eCollection 2018 May 22.

Abstract

Single-stranded DNA rings play important roles in nanoarchitectures, molecular machines, DNA detection, Although T4 DNA ligase has been widely employed to cyclize single-stranded oligonucleotides into rings, the cyclization efficiency is very low when the oligonucleotides (l-DNAs) take complicated secondary structures at ambient temperatures. In the present study, this problem has been solved by using DNA ligase ( DNA ligase) at higher temperatures (65 and 70 °C) where the secondary structures are less stable or completely destroyed. This method is based on our new finding that this ligase successfully functions even when the splint strand is short and forms no stable duplex with l-DNA (at least in the absence of the enzyme). In order to increase the efficiency of cyclization, various operation factors (lengths and sequences of splint, as well as the size of the DNA ring) have been investigated. Based on these results, DNA rings have been successfully synthesized from secondarily structured oligonucleotides in high yields and high selectivity. The present methodology is applicable to the preparation of versatile DNA rings involving complicated secondary structures, which should show novel properties and greatly widen the scope of DNA-based nanotechnology.

摘要

单链DNA环在纳米结构、分子机器、DNA检测中发挥着重要作用。尽管T4 DNA连接酶已被广泛用于将单链寡核苷酸环化形成环,但在环境温度下,当寡核苷酸(l-DNAs)具有复杂的二级结构时,环化效率非常低。在本研究中,通过在较高温度(65和70°C)下使用DNA连接酶(DNA连接酶)解决了这个问题,在该温度下二级结构不太稳定或完全被破坏。该方法基于我们的新发现,即即使夹板链很短且与l-DNA不形成稳定的双链体(至少在没有酶的情况下),这种连接酶仍能成功发挥作用。为了提高环化效率,研究了各种操作因素(夹板的长度和序列以及DNA环的大小)。基于这些结果,已成功地从具有二级结构的寡核苷酸中高产率、高选择性地合成了DNA环。本方法适用于制备涉及复杂二级结构的通用DNA环,这些DNA环应具有新颖的性质,并大大拓宽基于DNA的纳米技术的范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a422/9080623/779cbc9e5203/c8ra02804d-s1.jpg

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