Cargando…

Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens

Combinatorial genetic screening using CRISPR-Cas9 is a useful approach to uncover redundant genes and to explore complex gene networks. However, current approaches suffer from interference between the single-guide RNAs (sgRNAs) and from limited gene targeting activity. To increase the efficiency of...

Descripción completa

Detalles Bibliográficos
Autores principales: Najm, Fadi J, Strand, Christine, Donovan, Katherine F, Hegde, Mudra, Sanson, Kendall R, Vaimberg, Emma W, Sullender, Meagan E, Hartenian, Ella, Kalani, Zohra, Fusi, Nicolo, Listgarten, Jennifer, Younger, Scott T, Bernstein, Bradley E, Root, David E, Doench, John G
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5800952/
https://www.ncbi.nlm.nih.gov/pubmed/29251726
http://dx.doi.org/10.1038/nbt.4048
_version_ 1783298279670284288
author Najm, Fadi J
Strand, Christine
Donovan, Katherine F
Hegde, Mudra
Sanson, Kendall R
Vaimberg, Emma W
Sullender, Meagan E
Hartenian, Ella
Kalani, Zohra
Fusi, Nicolo
Listgarten, Jennifer
Younger, Scott T
Bernstein, Bradley E
Root, David E
Doench, John G
author_facet Najm, Fadi J
Strand, Christine
Donovan, Katherine F
Hegde, Mudra
Sanson, Kendall R
Vaimberg, Emma W
Sullender, Meagan E
Hartenian, Ella
Kalani, Zohra
Fusi, Nicolo
Listgarten, Jennifer
Younger, Scott T
Bernstein, Bradley E
Root, David E
Doench, John G
author_sort Najm, Fadi J
collection PubMed
description Combinatorial genetic screening using CRISPR-Cas9 is a useful approach to uncover redundant genes and to explore complex gene networks. However, current approaches suffer from interference between the single-guide RNAs (sgRNAs) and from limited gene targeting activity. To increase the efficiency of combinatorial screening, we employ orthogonal Cas9 enzymes from S. aureus and S. pyogenes. We used machine learning to establish S. aureus Cas9 sgRNA design rules and paired S. aureus Cas9 with S. pyogenes Cas9 to achieve dual targeting in a high fraction of cells. We also developed a lentiviral vector and cloning strategy to generate high-complexity pooled dual-knockout libraries to identify synthetic lethal and buffering gene pairs across multiple cell types, including MAPK pathway genes and apoptotic genes. Our orthologous approach enabled a screen combining gene knockouts with transcriptional activation, which revealed genetic interactions with TP53. The “Big Papi” (Paired aureus and pyogenes for intereactions) approach described here will be widely applicable for the study of combinatorial phenotypes.
format Online
Article
Text
id pubmed-5800952
institution National Center for Biotechnology Information
language English
publishDate 2017
record_format MEDLINE/PubMed
spelling pubmed-58009522018-06-18 Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens Najm, Fadi J Strand, Christine Donovan, Katherine F Hegde, Mudra Sanson, Kendall R Vaimberg, Emma W Sullender, Meagan E Hartenian, Ella Kalani, Zohra Fusi, Nicolo Listgarten, Jennifer Younger, Scott T Bernstein, Bradley E Root, David E Doench, John G Nat Biotechnol Article Combinatorial genetic screening using CRISPR-Cas9 is a useful approach to uncover redundant genes and to explore complex gene networks. However, current approaches suffer from interference between the single-guide RNAs (sgRNAs) and from limited gene targeting activity. To increase the efficiency of combinatorial screening, we employ orthogonal Cas9 enzymes from S. aureus and S. pyogenes. We used machine learning to establish S. aureus Cas9 sgRNA design rules and paired S. aureus Cas9 with S. pyogenes Cas9 to achieve dual targeting in a high fraction of cells. We also developed a lentiviral vector and cloning strategy to generate high-complexity pooled dual-knockout libraries to identify synthetic lethal and buffering gene pairs across multiple cell types, including MAPK pathway genes and apoptotic genes. Our orthologous approach enabled a screen combining gene knockouts with transcriptional activation, which revealed genetic interactions with TP53. The “Big Papi” (Paired aureus and pyogenes for intereactions) approach described here will be widely applicable for the study of combinatorial phenotypes. 2017-12-18 2018-02 /pmc/articles/PMC5800952/ /pubmed/29251726 http://dx.doi.org/10.1038/nbt.4048 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Najm, Fadi J
Strand, Christine
Donovan, Katherine F
Hegde, Mudra
Sanson, Kendall R
Vaimberg, Emma W
Sullender, Meagan E
Hartenian, Ella
Kalani, Zohra
Fusi, Nicolo
Listgarten, Jennifer
Younger, Scott T
Bernstein, Bradley E
Root, David E
Doench, John G
Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title_full Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title_fullStr Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title_full_unstemmed Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title_short Orthologous CRISPR-Cas9 enzymes for Combinatorial Genetic Screens
title_sort orthologous crispr-cas9 enzymes for combinatorial genetic screens
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5800952/
https://www.ncbi.nlm.nih.gov/pubmed/29251726
http://dx.doi.org/10.1038/nbt.4048
work_keys_str_mv AT najmfadij orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT strandchristine orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT donovankatherinef orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT hegdemudra orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT sansonkendallr orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT vaimbergemmaw orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT sullendermeagane orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT hartenianella orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT kalanizohra orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT fusinicolo orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT listgartenjennifer orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT youngerscottt orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT bernsteinbradleye orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT rootdavide orthologouscrisprcas9enzymesforcombinatorialgeneticscreens
AT doenchjohng orthologouscrisprcas9enzymesforcombinatorialgeneticscreens