| Literature DB >> 27236514 |
Carola E Dehler1, Pierre Boudinot2, Samuel A M Martin1, Bertrand Collet3.
Abstract
CRISPR/Cas9 system has been used widely in animals and plants to direct mutagenesis. To date, no such method exists for fish somatic cell lines. We describe an efficient procedure for genome editing in the Chinook salmon Oncorhynchus tshawytscha CHSE. This cell line was genetically modified to firstly overexpress a monomeric form of EGFP (cell line CHSE-E Geneticin resistant) and additionally to overexpress nCas9n, a nuclear version of Cas9 (cell line CHSE-EC, Hygromycin and Geneticin resistant). A pre-validated sgRNA was produced in vitro and used to transfect CHSE-EC cells. The EGFP gene was disrupted in 34.6 % of cells, as estimated by FACS and microscopy. The targeted locus was characterised by PCR amplification, cloning and sequencing of PCR products; inactivation of the EGFP gene by deletions in the expected site was validated in 25 % of clones. This method opens perspectives for functional genomic studies compatible with high-throughput screening.Entities:
Keywords: CHSE-214; CRISPR/Cas9; EGFP; FACS; Genome editing; nCas9n
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Year: 2016 PMID: 27236514 PMCID: PMC5007268 DOI: 10.1007/s10126-016-9708-6
Source DB: PubMed Journal: Mar Biotechnol (NY) ISSN: 1436-2228 Impact factor: 3.619
Fig. 1Fluorescent monolayer of the CHSE-EC (passage 5) cell line before (a) and after (b) transfection with the sgRNA targeting the EGFP locus. Bright field and fluorescence images have been overlaid in B in order to visualise non-fluorescent cells. Intensities of each channel have been adjusted for maximum visibility. FACS analysis of CHSE, CHSE-EC before and after sgRNA transfection (c): left panel: flow cytometry gating scheme (FSC-A, x-axis; SSC-A, y-axis). Populations P4, P5 and P6 were distinguished. Right panel: GFP fluorescence intensity of the P6 gated population (FL1-A, x-axis), number of cells (y-axis) and % of gated fluorescent cells are indicated
Fig. 2Indel mutations isolated from genomic DNA purified from the sgRNA-transfected CHSE-EC cells. Sequence alignment in the sgRNA target (a) and corresponding chromatograms (b)