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A rapid and efficient red-light-activated Cre recombinase system for genome engineering in mammalian cells and transgenic mice

Nucleic Acids Research. 2025-08; 
Yang Zhou, Yu Wei, Jianli Yin, Deqiang Kong, Wenjun Li, Xinyi Wang, Yining Yao, Qin Huang, Lei Li, Mengyao Liu, Longliang Qiao, Huiying Li, Junwei Zhao, Tao P Zhong, Dali Li, Liting Duan, Ningzi Guan, Haifeng Ye Wuhu Hospital, Health Science Center, East China Normal University, Wuhu 241001, China.
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Abstract

The Cre-loxP recombination system enables precise genome engineering; however, existing photoactivatable Cre tools suffer from several limitations, including low DNA recombination efficiency, background activation, slow activation kinetics, and poor tissue penetration. Here, we present REDMAPCre, a red-light-controlled split-Cre system based on the ΔPhyA/FHY1 interaction. REDMAPCre enables rapid activation (1-s illumination) and achieves an 85-fold increase in reporter expression over background levels. We demonstrate its efficient regulation of DNA recombination in mammalian cells and mice, as well as its compatibility with other inducible recombinase systems for Boolean logic-gated DNA recombination. Using a... More

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