生物
Cas9
清脆的
计算生物学
遗传学
基因组编辑
腺苷脱氨酶
范围(计算机科学)
基础(拓扑)
突变
HEK 293细胞
突变
碱基对
水稻
生物信息学
锌指核酸酶
基序列
生物技术
嵌合基因
基因复制
分子生物学
基因
基因缺失
作者
Jianjian Hu,Xue Li,Yuhong Xin Gao,Yifan Guo,Yuan Liu,Chen Wang,Gencheng Xu,Chaoyue Du,Shijia Liu,Zhigang Zhao,Yu Wang,Yufeng Wu,Xiaoou Dong,Chao Li,J.-C. Wan
摘要
Adenine base editors (ABEs) produce precise A-to-G conversion in the genomic target sites without causing double-strand breaks. However, the hyperactive adenosine deaminase TadA8e raises safety concerns on genome-wide off-target edits. We engineered 11 chimeric proteins for ABEs (CP-ABEs) by embedding hyperactive TadA8e within Cas9 nickase to minimise the sgRNA-independent off-target effects. Four CP-ABEs exhibited robust on-target activity with minimal sgRNA-independent off-target edits. Then we developed four chimeric high-fidelity ABEs (CH-ABEs) to minimise both sgRNA-dependent and sgRNA-independent off-target effects by employing high-fidelity Cas9 variants. The CH-ABEs achieved reductions of up to 7.0-fold and 79.4-fold in the respective off-target edits, while generating 22.0%-72.4% homozygous and biallelic rice mutants. Whole-genome and whole-transcriptome sequencing (WGS/WTS) confirmed the specificity of CH-ABEs. Incorporating Sniper2L into CH-ABEs further enhanced both specificity and on-target activity. Two PAM-less SpRY variants (SpRY-K2, SpRY-KK) expanded the targeting scope of CP-ABEs and boosted activity by 80.0%. Furthermore, we demonstrated that CP-ABE8e-RYKK could discriminate paralogous targets in rice and successfully applied it to create herbicide-resistant rice by precisely installing the OsALS-K591E mutation.
科研通智能强力驱动
Strongly Powered by AbleSci AI