转座因子
基因组编辑
表型
效应器
基因
生物
遗传学
核酸酶
基因组工程
转录激活物样效应核酸酶
清脆的
计算生物学
核糖核酸
引导RNA
细胞生物学
基因组
作者
Zhifang Li,Ruochen Guo,Xiao-Zhi Sun,Guoling Li,Zhuang Shao,Xiaona Huo,Rongrong Yang,Xinyu Liu,Xi Cao,Hainan Zhang,Weihong Zhang,Xiaoyin Zhang,Shuangyu Ma,Meiling Zhang,Yuanhua Liu,Yinan Yao,Jinqi Shi,Hui Yang,Chunyi Hu,Yingsi Zhou
标识
DOI:10.1038/s41467-024-45197-z
摘要
Abstract Transposon-associated ribonucleoprotein TnpB is known to be the ancestry endonuclease of diverse Cas12 effector proteins from type-V CRISPR system. Given its small size (408 aa), it is of interest to examine whether engineered TnpB could be used for efficient mammalian genome editing. Here, we showed that the gene editing activity of native TnpB from Deinococcus radiodurans (ISDra2 TnpB) in mouse embryos was already higher than previously identified small-sized Cas12f1. Further stepwise engineering of noncoding RNA (ωRNA or reRNA) component of TnpB significantly elevated the nuclease activity of TnpB. Notably, an optimized TnpB-ωRNA system could be efficiently delivered in vivo with single adeno-associated virus (AAV) and corrected the disease phenotype in a tyrosinaemia mouse model. Thus, the engineered miniature TnpB system represents a new addition to the current genome editing toolbox, with the unique feature of the smallest effector size that facilitate efficient AAV delivery for editing of cells and tissues.
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