Long-term correction of hemophilia B through CRISPR/Cas9 induced homology-independent targeted integration
Xi Chen, Xuran Niu, Yang Liu, Rui Zheng, Lei Yang, Jian Lu, Shuming Yin, Yu Wei, Jiahao Pan, Ahmed Sayed, Xueyun Ma, Meizhen Liu, Fengxiang Jing, Mingyao Liu, Jiazhi Hu, Liren Wang, Dali Li
Journal:Journal of Genetics and Genomics
IF:5.72
DOI:10.1016/j.jgg.2022.06.001
PMID:35691554
Published:2022-06-09
research field:神经科学合成生物学结构生物学肝脏病学
Abstract
CRISPR/Cas9-mediated site-specific insertion of exogenous genes holds potential for clinical applications. However, it is still infeasible because homologous recombination (HR) is inefficient, especially for non-dividing cells. To overcome the challenge, we report that a homology-independent targeted integration (HITI) strategy is used for permanent integration of high-specificity-activity Factor IX variant ( F9 Padua, R338L) at the albumin ( Alb ) locus in a novel hemophilia B (HB) rat model. The knock-in efficiency reaches 3.66%, as determined by droplet digital PCR (ddPCR). The clotting time is reduced to a normal level four weeks after treatment, and the circulating factor IX (FIX) level is gradually increased up to 52% of the normal level over nine months even after partial hepatectomy, demonstrating the amelioration of hemophilia. Through primer-extension-mediated sequencing (PEM-seq), no significant off-target effect is detected. This study not only provides a novel model for HB but also identifies a promising therapeutic approach for rare inherited diseases.
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