重组酶
基因组编辑
DNA
计算生物学
计算机科学
基因组
人类基因组
生物
RNA编辑
合成生物学
遗传学
基因组DNA
核糖核酸
同源重组
DNA测序
整合酶
作者
Oana Pelea,András Tálas,Javier Fernández Carrera,Nicolas Mathis,Lilly van de Venn,Charles D. Yeh,Péter I. Kulcsár,Kim Fabiano Marquart,Yanik Weber,Saskia E. Gerecke,Isabelle F. Harvey-Seutcheu,Dominic Mailänder,Moritz M. Pfleiderer,Christelle Chanez,Jacob E. Corn,Gerald Schwank,Martin Jínek
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-02-05
卷期号:391 (6790): eadz1884-eadz1884
被引量:1
标识
DOI:10.1126/science.adz1884
摘要
Site-specific insertion of gene-sized DNA fragments remains an unmet need in the field of genome editing. IS110-family serine recombinases have recently been shown to mediate programmable DNA recombination in bacteria by using a bispecific RNA guide (bridge RNA) that simultaneously recognizes target and donor sites. In this work, we have shown that the bridge recombinase ISCro4 is highly active in human cells and provided structural insights into its enhanced activity. Using plasmid- or all-RNA-based delivery, ISCro4 supports programmable multikilobase excisions and inversions and facilitates donor DNA insertion at genomic sites with efficiencies that exceed 6%. Last, we assessed ISCro4 specificity and off-target activity. These results establish a framework for the development of bridge recombinases as next-generation tools for editing modalities that are beyond the capabilities of current technologies.
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