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Regulated transformation system (RTS): sddi-mediated programmable shut-off and mode switching of base editors

Nucleic Acids Research. 2026-03; 
Jiacheng Deng, Jian Zhou, Hongyong Xiang, Xueyuan Li, Xiang Han, Zhen Weng, Junbo Jia, Yingshuo Shao, Yang Sima, Ming Niu, Dongmeng Li, Hongsheng Ouyang, Bin Xu, Daxin Pang, Lin Yang, Hongming Yuan
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Gene Synthesis All Sddi DNA sequences were codon-optimized for human expression and synthesized by GenScript (China). Following the construction strategy, the ACBE-RTS expression cassette was custom synthesized by GenScript (China) and codon-optimized for human expression. Get A Quote
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Abstract

Orthogonal and externally controllable base editors are critical for safe multiplexed single-nucleotide manipulation in vivo. Here, we identify ~140-aa miniature deaminase inhibitors (Sddis) that bind cognate single-stranded DNA deaminases (Sdds) with high affinity and specificity, occluding their DNA-binding surfaces to completely inhibit C-to-T activity. Based on these inhibitors, we engineer an adenine and cytosine base editing-regulated transformation system (ACBE-RTS). This platform features two inactive dSdds fused to nCas9 as docking arms, with effector modules provided by doxycycline-inducible SviSddi-SflSdd (CBE) and cumate-inducible Air1Sddi-ABE8e (ABE) fusions. Small-molecule regulation enables switc... More

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