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

royal society of chemistry. 2019; 
Kai Cheng‡ a,  Ran An‡ab,  Yixiao Cuia,  Yaping Zhanga,  Xutiange Hana,  Zhe Suia,  Hui Chena,  Xingguo Liang*ab and Makoto Komiyama*a 
Products/Services Used Details Operation
Custom DNA/RNA Oligos All oligoRNAs used in this study were synthesized by GenScript (Nanjing, China), and the oligoDNAs were purchased from Invitrogen (Shanghai, China). For ligation experiments, a phosphate was enzymatically introduced to the 5′-position of RNA or DNA by using T4 polynucleotide kinase (Thermo Scientific; Pittsburgh, PA, USA). SYBR Gold and RiboLock RNase Inhibitor were also from Thermo Scientific. T4 RNA ligase 2 (Rnl2) and Exonuclease T were purchased from NEW ENGLAND BioLabs (Beijing, China). All other chemicals were from Sigma-Aldrich (St. Louis, MO, USA). Get A Quote

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 ... More

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