转甲状腺素
计算生物学
基因组编辑
基因
淀粉样变性
淀粉样蛋白(真菌学)
化学
Cas9
清脆的
生物信息学
计算机科学
淀粉样疾病
生物
染色体易位
相容性(地球化学)
癌症研究
多系统疾病
淀粉样纤维
作者
Sixian Qi,Lifan Wei,Zhan Ding,Feiya Zhong,Sicong Yang,Leibin Wu,Xuan Yang,Bin G. Kang,Mo Dan,Jianhua Gan,Chunlei Li,Xiaoye Su
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-01-02
卷期号:12 (1)
标识
DOI:10.1126/sciadv.adu6505
摘要
Amyloid transthyretin (ATTR) amyloidosis is a fatal disease caused by the accumulation of misfolded transthyretin proteins. Although knocking down the TTR gene by CRISPR-Cas9 represents a promising strategy for treating ATTR amyloidosis, its efficiency and safety remain to be further investigated. Here, we report a systematic investigation of SpCas9-based TTR editing. Besides the target site, wild-type SpCas9 and the reported variants induced extensive off-target edits. To improve the fidelity, we performed structural analysis and designed a series of SpCas9 variants. Studies demonstrated that SpCas9-Mut5 is an ultrahigh-fidelity variant, which induces extremely low levels of off-target edits and translocations without substantial impairment of on-target editing activity. SpCas9-Mut5 is compatible with the adenine base editor (ABE) system, markedly reducing off-target edits and narrowing the editing window. In conclusion, our study suggests that SpCas9-Mut5 is an excellent candidate for TTR gene editing. Besides ATTR amyloidosis, SpCas9-Mut5 and its derivative ABE could be widely used in the treatment of other diseases.
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