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◆ Nature biotechnology2026-08-28

Precise genomic integration of large DNA fragments by donor-directed annealing using prime editing.

Hojun Jung, Bada Jeong, Yong-Woo Kim, Chanju Jung, Seoho Lee, Heesoo Uhm, Hyoungrak Kim, Ye Eun Oh, Yoonseo Park, Yeji Lee, Miseung Kang, Hyeon Woo Im, Doyoon Kim, Soyoon Lee, Yohan Kim, Kyungho Choi, Sangsu Bae

原始摘要(英文原文)· Original abstract
Replacing large-scale fragments in human cells remains a substantial challenge. Here, we present a programmable gene replacement tool, named prime assembly (PA), which adapts prime editors to produce one or two pairs of 3'-flaps on both the genome and donor DNA. These 3'-flaps anneal to each other precisely, similar to Gibson assembly in DNA oligonucleotides, allowing megabase-scale genomic excision and/or kilobase-scale donor insertion at the gene of interest. PA accepts DNA plasmids and linear double-stranded DNA as donors, ranging from 1.0 to 6.5 kb in size. We demonstrate an efficiency of up to 57.8% in replacing endogenous sequences with a 2.9-kb donor DNA fragment in HEK293T cells, with an accuracy of >90% for integrated PA fragments. Furthermore, PA enables site-specific chimeric antigen receptor integration with up to 28.1% efficiency in primary human T cells. When PA containing a GFP donor is delivered to mice by hydrodynamic injection, an average integration efficiency of 4.3% is measured in GFP-positive hepatocytes.
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Precise genomic integration of large DNA fragments by donor-directed annealing using prime editing. — 科研速览 Science Skim