Uncovering functional variants using a high-efficiency PE3-based screening platform
Shisheng Huang, Wanyu Tao, Xiangyang Li, Junfan Guo, Yu Zhang, Guanglei Li, Pengfei Zhang, Guiquan Zhang, Gaoyang Li, Gaofeng Fan, Shang-Min Zhang, Xingxu Huang
Journal:Science Advances
IF:13.9
DOI:10.1126/sciadv.ady7359
PMID:
Published:2026-06-05
research field:肿瘤学功能基因组学基因组编辑分子生物学癌症研究精准医学肝脏病学
Abstract
Prime editing (PE) enables precise nucleotide changes but has limited utility in high-throughput functional screening due to low editing efficiency. Here, we developed EvoPRIME, a PE3-based screening platform that integrates Csy4-mediated processing of Pol II–driven guide RNAs with a fluorescence-based enrichment strategy. EvoPRIME achieves comparable efficiency to state-of-the-art prime editing systems without requiring mismatch repair (MMR) suppression. We validated the performance of EvoPRIME through a loss-of-function (LOF) dropout screen targeting essential genes, which showed improved sensitivity and reproducibility, and a gain-of-function (GOF) saturation mutagenesis screen of the EGFR tyrosine kinase domain under osimertinib selection, which identified both known and uncharacterized resistance-conferring mutations. Leveraging EvoPRIME, we further conducted a high-throughput screen that functionally assesses both gain- and loss-of-phosphorylation (GOP and LOP) mutations. Among the hits, GAB1 S419E emerged as a phosphomimetic mutation that activates AKT signaling and confers osimertinib resistance. These studies establish EvoPRIME as a versatile platform for uncovering functional variants.
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