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Arrayed CRISPR screen with image-based assay reliably uncovers host genes required for coxsackievirus infection

Cited 33 time in Web of Science Cited 35 time in Scopus
Authors

Kim, Heon Seok; Lee, Kyungjin; Kim, Seong-Jun; Cho, Sungchan; Shin, Hye Jin; Kim, Chonsaeng; Kim, Jin-Soo

Issue Date
2018-06
Publisher
Cold Spring Harbor Laboratory Press
Citation
Genome Research, Vol.28 No.6, pp.859-868
Abstract
Pooled CRISPR screens based on lentiviral systems have been widely applied to identify the effect of gene knockout on cellular phenotype. Although many screens were successful, they also have the limitation that genes conferring mild phenotypes or those essential for growth can be overlooked, as every genetic perturbation is incorporated in the same population. Arrayed screens, on the other hand, incorporate a single genetic perturbation in each well and could overcome these limitations. However, arrayed screens based on siRNA-mediated knockdown were recently criticized for low reproducibility caused by incomplete inhibition of gene expression. To overcome these limitations, we developed a novel arrayed CRISPR screen based on a plasmid library expressing a single guide RNA (sgRNA) and disrupted 1514 genes, encoding kinases, proteins related to endocytosis, and Golgi-localized proteins, individually using 4542 sgRNAs (three sgRNAs per gene). This screen revealed host factors required for infection by coxsackievirus B3 (CVB3) from Picornaviridae, which includes human pathogens causing diverse diseases. Many host factors that had been overlooked in a conventional pooled screen were identified for CVB3 infection, including entry-related factors, translational initiation factors, and several replication factors with different functions, demonstrating the advantage of the arrayed screen. This screen was quite reliable and reproducible, as most genes identified in the primary screen were confirmed in secondary screens. Moreover, ACBD3, whose phenotype was not affected by siRNA-mediated knockdown, was reliably identified. We propose that arrayed CRISPR screens based on sgRNA plasmid libraries are powerful tools for arrayed genetic screening and applicable to larger-scale screens.
ISSN
1088-9051
URI
https://hdl.handle.net/10371/165701
DOI
https://doi.org/10.1101/gr.230250.117
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  • College of Natural Sciences
  • Department of Chemistry
Research Area Biology and Biochemistry

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