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Efficient high-precision transgene knock-in by Recombinases (Redα/β)-enhanced DNA integration-CRISPR-Cas9 (RED-CRISPR)

Nature Communications. 2025-12; 
Wenqing Li, Senquan Liu, Xiaoyu Fang, Jiaqi Zou, Qin Jiang, Xiaolin Min, Xiaoli Zhu, Yuzhu Cao, Xiaoxiao Gao, Wenjie Han, Muhammad Azhar, Xuemei Xing, Fudong Li, Youming Zhang, Hongbin Liu, Linzhao Cheng, Chengkun Wang, Jianqiang Bao
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Abstract

CRISPR-Cas9 tools have revolutionized genetic engineering, yet the efficient precise integration of DNA cargos, particularly for large DNA payloads (>1 kilobase, kb), remains a technical bottleneck. Herein, we develop a Recombinases (Redα/β)-enhanced DNA integration-CRISPR-Cas9 approach, referred to as RED-CRISPR, which offers a versatile yet robust homology-directed repair (HDR) strategy enabling efficient and precise kb-scale DNA insertion across various cell types, including immortalized and primary cells of variable origins. RED-CRISPR significantly enhances HDR efficiencies by 2- to 5-fold change across diverse loci and further elevates HDR rates by 1.5- to 2.5-fold when synergizing with other HDR-enhanc... More

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