Efficient engineering of human and mouse primary cells using peptide-assisted genome editing

利用肽辅助基因组编辑技术高效改造人和小鼠原代细胞

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作者:Zhen Zhang ,Amy E Baxter ,Diqiu Ren ,Kunhua Qin ,Zeyu Chen ,Sierra M Collins ,Hua Huang ,Chad A Komar ,Peter F Bailer ,Jared B Parker ,Gerd A Blobel ,Rahul M Kohli ,E John Wherry ,Shelley L Berger ,Junwei Shi

Abstract

Simple, efficient and well-tolerated delivery of CRISPR genome editing systems into primary cells remains a major challenge. Here we describe an engineered Peptide-Assisted Genome Editing (PAGE) CRISPR-Cas system for rapid and robust editing of primary cells with minimal toxicity. The PAGE system requires only a 30-min incubation with a cell-penetrating Cas9 or Cas12a and a cell-penetrating endosomal escape peptide to achieve robust single and multiplex genome editing. Unlike electroporation-based methods, PAGE gene editing has low cellular toxicity and shows no significant transcriptional perturbation. We demonstrate rapid and efficient editing of primary cells, including human and mouse T cells, as well as human hematopoietic progenitor cells, with editing efficiencies upwards of 98%. PAGE provides a broadly generalizable platform for next-generation genome engineering in primary cells.

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