核酶
环状RNA
RNA剪接
连接酶核酶
内含子
核糖核酸
四膜虫
计算生物学
生物
先天免疫系统
外显子
滚动圆复制
细胞生物学
分子生物学
化学
DNA
遗传学
免疫系统
基因
聚合酶
作者
Kyung Hyun Lee,Seongcheol Kim,Jaehwi Song,Seung Ryul Han,Ji Hyun Kim,Seong‐Wook Lee
标识
DOI:10.1016/j.omtn.2023.07.034
摘要
Circular RNA (circRNA) has various advantages over linear mRNA that is gaining success as a new vaccine and therapeutic agent. Thus, circRNA and its engineering methods have attracted attention recently. In this study, we developed a new in vitro circRNA engineering method by end-to-end self-targeting and splicing (STS) reaction using Tetrahymena group I intron ribozyme. We found that only the P1 helix structure of the group I intron was enough to generate circRNA by STS reaction. The efficacy of circRNA generation by STS reaction was comparable to the method using a permuted intron-exon (PIE) reaction. However, an end-to-end STS reaction does not introduce any extraneous fragments, such as an intronic scar that can be generated by PIE reaction and might trigger unwanted innate immune responses in cells, into circRNA sequences. Moreover, generated circRNA was efficiently purified by ion pair-reversed phase high-pressure liquid chromatography and used for cell-based analysis. Of note, efficient protein expression and stability with least innate immune induction by the circRNA with coxsackievirus B3 IRES were observed in cells. In conclusion, our new in vitro circRNA strategy can effectively generate highly useful circRNAs in vitro as an alternative circRNA engineering method.
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