Cas9
引导RNA
合成生物学
计算生物学
生物
基因组工程
基因组
清脆的
亚基因组mRNA
遗传学
基因
计算机科学
基因组编辑
作者
Peter C. DeWeirdt,Kendall R Sanson,Annabel K. Sangree,Mudra Hegde,Ruth E. Hanna,Marissa N. Feeley,Audrey L Griffith,Teng Teng,Samantha Borys,Christine Strand,J. Keith Joung,Benjamin P. Kleinstiver,Xuewen Pan,Alan Huang,John G. Doench
标识
DOI:10.1038/s41587-020-0600-6
摘要
Cas12a RNA-guided endonucleases are promising tools for multiplexed genetic perturbations because they can process multiple guide RNAs expressed as a single transcript, and subsequently cleave target DNA. However, their widespread adoption has lagged behind Cas9-based strategies due to low activity and the lack of a well-validated pooled screening toolkit. In the present study, we describe the optimization of enhanced Cas12a from Acidaminococcus (enAsCas12a) for pooled, combinatorial genetic screens in human cells. By assaying the activity of thousands of guides, we refine on-target design rules and develop a comprehensive set of off-target rules to predict and exclude promiscuous guides. We also identify 38 direct repeat variants that can substitute for the wild-type sequence. We validate our optimized AsCas12a toolkit by screening for synthetic lethalities in OVCAR8 and A375 cancer cells, discovering an interaction between MARCH5 and WSB2. Finally, we show that enAsCas12a delivers similar performance to Cas9 in genome-wide dropout screens but at greatly reduced library size, which will facilitate screens in challenging models.
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