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◆ Nature2026-09-16

Targeted genomic integration and rearrangement using prime assembly.

Sébastien Levesque, Nozomu Kawashima, Gue-Ho Hwang, Jing Zeng, Vasil Toskov, Timothy Barry, William Mannherz, Luke Homfeldt, Basheer Becerra, Vivien A C Schoonenberg, Luca Pinello, Suneet Agarwal, Daniel E Bauer

原始摘要(英文原文)· Original abstract
Although therapeutic genome editing holds great potential to remedy diverse inherited and acquired disorders, targeted installation of medium-to-large genomic modifications in therapeutically relevant cells remains challenging1. Here we develop prime assembly, an approach that permits DNA sequence assembly and integration in human cells leveraging CRISPR-targeted dual flap synthesis. This method enables RNA-programmable site-specific integration of single or double-stranded DNA fragments. Unlike homology-directed repair, prime assembly is similarly active in dividing and non-dividing cells. We applied prime assembly to perform targeted exon recoding, transgene integration and megabase-scale rearrangements, including at therapeutically relevant loci in primary human cells. Prime assembly expands the capabilities of genome engineering by enabling the targeted integration of medium to large-sized DNA sequences without relying on double-stranded DNA donors, nuclease-driven double-strand breaks or cell cycle progression.
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Targeted genomic integration and rearrangement using prime assembly. — 科研速览 Science Skim