OMEGA RNA (ÏRNA)-guided endonuclease IscB, the evolutionary ancestor of Cas9, is an attractive system for in vivo genome editing because of its compact size and mechanistic resemblance to Cas9. However, wild-type IscB-ÏRNA systems show limited activity in human cells. Here we report enhanced OgeuIscB, which, with eight amino acid substitutions, displayed a fourfold increase in in vitro DNA-binding affinity and a 30.4-fold improvement in insertion-deletion (indel) formation efficiency in human cells. Paired with structure-guided ÏRNA engineering, the enhanced OgeuIscB-ÏRNA systems efficiently edited the human genome across 26 target sites, attaining up to 87.3% indel and 62.2% base-editing frequencies. Both wild-type and engineered OgeuIscB-ÏRNA showed moderate fidelity in editing the human genome, with off-target profiles revealing key determinants of target selection including an NARR target-adjacent motif (TAM) and the TAM-proximal 14 nucleotides in the R-loop. Collectively, our engineered OgeuIscB-ÏRNA systems are programmable, potent and sufficiently specific for human genome editing.
Assessing and engineering the IscB-ÏRNA system for programmed genome editing.
评估和改造 IscB-αRNA 系统以进行程序化基因组编辑
阅读:13
作者:Yan Hao, Tan Xiaoqing, Zou Siyuan, Sun Yihong, Ke Ailong, Tang Weixin
| 期刊: | Nature Chemical Biology | 影响因子: | 13.700 |
| 时间: | 2024 | 起止号: | 2024 Dec;20(12):1617-1628 |
| doi: | 10.1038/s41589-024-01669-3 | 研究方向: | 其它 |
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