| Literature DB >> 28533524 |
Emmanouil Metzakopian1, Alex Strong1, Vivek Iyer1, Alex Hodgkins1, Konstantinos Tzelepis1, Liliana Antunes1, Mathias J Friedrich1, Qiaohua Kang2,3, Teresa Davidson2,3, Jacob Lamberth2,3, Christina Hoffmann2,3, Gregory D Davis2,3, George S Vassiliou1, William C Skarnes1, Allan Bradley4.
Abstract
CRISPR-Cas9 technology has accelerated biological research becoming routine for many laboratories. It is rapidly replacing conventional gene editing techniques and has high utility for both genome-wide and gene-focussed applications. Here we present the first individually cloned CRISPR-Cas9 genome wide arrayed sgRNA libraries covering 17,166 human and 20,430 mouse genes at a complexity of 34,332 sgRNAs for human and 40,860 sgRNAs for the mouse genome. For flexibility in generating stable cell lines the sgRNAs have been cloned in a lentivirus backbone containing PiggyBac transposase recognition elements together with fluorescent and drug selection markers. Over 95% of tested sgRNA induced specific DNA cleavage as measured by CEL-1 assays. Furthermore, sgRNA targeting GPI anchor protein pathway genes induced loss of function mutations in human and mouse cell lines measured by FLAER labelling. These arrayed libraries offer the prospect for performing screens on individual genes, combinations as well as larger gene sets. They also facilitate rapid deconvolution of signals from genome-wide screens. This set of vectors provide an organized comprehensive gene editing toolbox of considerable scientific value.Entities:
Mesh:
Substances:
Year: 2017 PMID: 28533524 PMCID: PMC5440395 DOI: 10.1038/s41598-017-01766-5
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Lentiviral plasmid used in construction of the sgRNA library. (a) Schematic of original lentiviral construct pKLV-U6gRNA(BbsI)-PGKpuro2ABFP described by Yusa et al.[11]. (b) Schematic of lentiviral construct Lenti-PB (pKLV-PB-U6gRNA(BbsI)-PGKpuro2ABFP) used in the sgRNA library generation where the U6 promoter initiates sgRNA transcription on the opposite strand. PiggyBac LTRs were also added flanking the U6-gRNA-PGKpuro-2A-BFP cassette. (c) Schematic of PB transposon integrated U6-gRNA-PGKpuro-2A-BFP cassette. (d) Schematic of lentivirus integrated U6-gRNA-PGKpuro-2A-BFP cassette.
Figure 2Lenti-PB stable expression by lentivirus or PB transposition. (a) BFP flow cytometry analysis of virus packaging and production of Lenti-PB construct compared to the original lentiviral construct in mouse ES cells. No puromycin selection was added to these cells. (b) Graph indicating percent of BFP positive cells over ten-day time points of Lenti-PB plasmid co-transfected with PB transposase expressing plasmid (red) for stable integration or with p-bluescript plasmid (black) for transient expression. (c) Example of BFP positive mouse embryonic stem cells transfected with Lenti-PB.
Figure 3Human and mouse sgRNA arrayed library design. (a) Schematic illustrating sgRNA genome wide library design work flow. (b,c) Graphs illustrating the number of sgRNA designed per gene exon in the human and mouse sgRNA arrayed libraries.
Figure 4(a) Schematic showing the cloning strategy of the sgRNA libraries in multi well plate format. (b) Duplex oligos synthesized for cloning in the lentiviral-PB sgRNA vector. (c) Schematic illustrating the experimental strategy for validation of 92 sgRNAs chosen from the human genome wide sgRNA library. (d) CEL-1 activity results indicating the cutting efficiency of 81 out of 85 samples which produced a PCR product indicating success rate of 95% functional sgRNAs. Average cutting efficiency of 27% is observed.
Figure 5(a) Schematic illustrating the experimental design for the GPI anchor protein pathway sgRNA phenotypic evaluation. (b) Example of flow cytometry analysis of FLAER stained cells using mouse ES cells transfected with sgRNAs against Pgap2 gene targeting site 1 and site 2. The sgRNA expressing cells were selected with puromycin from 24 hours post transfection and selection was maintained for 2 days. Cells were analysed 6 days post transfection. Mock experiment was performed with non-targeting gRNA. Cells: untransfected and unstained cells. FLAER only: untransfected and FLAER stained cells. BFP only: transfected cells with a non targeting sgRNA construct and unstained. Mock: transfected cells with a non targeting sgRNA construct and FLAER stained. Pgap2 S1 and S2: transfected cells with sgRNAs targeting site 1 and site 2 of the Pgap2 gene and FLAER stained. (c) Flow cytometry results for BFP positive/FLAER negative human HEK 293, MOLM-13, MV4-11, and mouse embryonic stem cells. PB transposition of sgRNA constructs was used for human HEK293 and mouse embryonic stem cells, lentiviral transduction of sgRNA constructs was used for the acute myeloid leukaemia (AML) cell lines, MOLM-13 and MV4-11.