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Noncanonical target-strand cytosine base editing via engineered Un1Cas12f1 platform

Nature Communications. 2025-10; 
Ziguo Song, Junfan Guo, Zhanqing Fan, Shuhong Huang, Guanglei Li, Zichang Zhao, Bingchun Chen, Shisheng Huang, Wenxin Zheng, Yinghui Wei, Yulin Chen, Xingxu Huang, Jianghuai Liu, Lina Wu, Xiaolong Wang
Products/Services Used Details Operation
Plasmid DNA Preparation DNA fragment encoding a promoter (HCRHAAT), the Un1Cas12f1 or enUn1Cas12f1 coding sequence, the bGH polyadenylation signal, and an sgRNA expression cassette under the U6 promoter was inserted between the inverted terminal repeats (ITRs) of a pAAV plasmid. The resulting plasmid was sent to GenScript for packaging into high-titer AAV particles (>1 × 10¹³ vg/mL). Get A Quote

摘要

CRISPR/Cas-derived base editors harness various deaminase or glycosylase activities to target bases within non-target strand (NTS) of the R-loop, catalyzing base conversions independent of double-strand break formation. To develop miniature BEs compatible with therapeutic viral vectors, we explore the compact Cas12f system. Through computational modeling and mutagenesis, we establish a highly active enUn1Cas12f1 protein, and subsequently construct the derivative cytosine BE (CBE). Remarkably, the engineered CBE exhibits an unexpected activity to also edit the target strand (TS), indicating its substantially expanded editable space. We refine this activity via a focused alanine scan, establishing a nickase-CBE t... More

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