生物
素数(序理论)
遗传学
计算生物学
组合数学
数学
作者
Ju-Chan Park,Heesoo Uhm,Yong Woo Kim,Ye Eun Oh,Jeung‐Hee Lee,Jiyun Yang,Kyoungmi Kim,Sangsu Bae
出处
期刊:Cell
[Elsevier]
日期:2025-08-01
被引量:1
标识
DOI:10.1016/j.cell.2025.07.010
摘要
The prime editing (PE) system consists of a Cas9 nickase fused to a reverse transcriptase, which introduces precise edits into the target genomic region guided by a PE guide RNA. However, PE efficiency is limited by mismatch repair. To overcome this limitation, transient expression of a dominant-negative MLH1 (MLH1dn) has been used to inhibit key components of mismatch repair. Here, we designed a de novo MLH1 small binder (MLH1-SB) that binds to the dimeric interface of MLH1 and PMS2 using RFdiffusion and AlphaFold 3. The compact size of MLH1-SB enabled its integration into existing PE architectures via 2A systems, creating a PE-SB platform. The PE7-SB2 system significantly improved PE efficiency, achieving an 18.8-fold increase over PEmax and a 2.5-fold increase over PE7 in HeLa cells, as well as a 3.4-fold increase over PE7 in mice. This study highlights the potential of generative AI in advancing genome editing technology.
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