Suppr超能文献

T4 RNA连接酶2对非常小的假切口结构进行RNA连接,从而高效产生多种RNA环。

RNA ligation of very small pseudo nick structures by T4 RNA ligase 2, leading to efficient production of versatile RNA rings.

作者信息

Cheng Kai, An Ran, Cui Yixiao, Zhang Yaping, Han Xutiange, Sui Zhe, Chen Hui, Liang Xingguo, Komiyama Makoto

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 266235 China.

出版信息

RSC Adv. 2019 Mar 14;9(15):8620-8627. doi: 10.1039/c9ra01513b. eCollection 2019 Mar 12.

Abstract

T4 RNA ligase 2 catalyses two types of reactions: (i) sealing of a nick structure in double-stranded RNA and (ii) connection of two single-stranded RNA strands. In order to obtain comprehensive views on these two types of reactions and widen the application scope of this RNA ligase, we here systematically analysed the connection of single-stranded RNA strands having different secondary structures. It has been found that the ligation is enormously promoted when a stem of only 4-bp or longer is formed in the 3'-OH side of the joining site. Additional placement of a stem in the 5'-phosphate side further facilitates the ligation. In contrast, perturbation of the stem structures in RNA substrates suppresses the ligation. These results indicate that ligation of two single-stranded RNA strands by T4 RNA ligase 2 is greatly promoted by forming a "nick-like intermediate". Even the unstable intermediate, formed only temporarily in the solution, is sufficiently effective. By designing the synthetic systems in terms of this finding, short single-stranded RNA rings of versatile sizes, which are otherwise hard to be obtained, are efficiently prepared in high selectivity and yield.

摘要

T4 RNA连接酶2催化两种类型的反应:(i)双链RNA中切口结构的封闭,以及(ii)两条单链RNA链的连接。为了全面了解这两种类型的反应并扩大这种RNA连接酶的应用范围,我们在此系统地分析了具有不同二级结构的单链RNA链的连接。已发现,当在连接位点的3'-OH侧形成仅4个碱基对或更长的茎时,连接反应会大大促进。在5'-磷酸侧额外放置一个茎进一步促进连接。相反,RNA底物中茎结构的扰动会抑制连接。这些结果表明,T4 RNA连接酶2催化的两条单链RNA链的连接通过形成“切口样中间体”而大大促进。即使是仅在溶液中暂时形成的不稳定中间体也足够有效。根据这一发现设计合成系统,可以高效、高选择性和高产率地制备各种尺寸的短单链RNA环,否则很难获得这些环。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验