清脆的
Cas9
同源定向修复
生物
DNA修复
基因组编辑
核酸外切酶
DNA
同源重组
计算生物学
细胞生物学
遗传学
基因
核苷酸切除修复
DNA聚合酶
作者
Mehmet E. Karasu,Eléonore Toufektchan,Yanyang Chen,Alessandra Albertelli,Grégoire Cullot,John Maciejowski,Jacob E. Corn
标识
DOI:10.1038/s41587-024-02356-3
摘要
Abstract CRISPR–Cas9-mediated homology-directed repair (HDR) can introduce desired mutations at targeted genomic sites, but achieving high efficiencies is a major hurdle in many cell types, including cells deficient in DNA repair activity. In this study, we used genome-wide screening in Fanconi anemia patient lymphoblastic cell lines to uncover suppressors of CRISPR–Cas9-mediated HDR. We found that a single exonuclease, TREX1 , reduces HDR efficiency when the repair template is a single-stranded or linearized double-stranded DNA. TREX1 expression serves as a biomarker for CRISPR–Cas9-mediated HDR in that the high TREX1 expression present in many different cell types (such as U2OS, Jurkat, MDA-MB-231 and primary T cells as well as hematopoietic stem and progenitor cells) predicts poor HDR. Here we demonstrate rescue of HDR efficiency (ranging from two-fold to eight-fold improvement) either by TREX1 knockout or by the use of single-stranded DNA templates chemically protected from TREX1 activity. Our data explain why some cell types are easier to edit than others and indicate routes for increasing CRISPR–Cas9-mediated HDR in TREX1 -expressing contexts.
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